全論文リスト

原著論文 (2024 / 2023 / 2022 / 2021 / 2020 / 2019 / 2018 / 2017 / 2016 / 2015 / 2014 / 2013 / 2012 / 2011 / 2010 / 2009 / 2008 / 2006)

著書・総説・解説記事

査読付き国際会議論文


■ 原著論文

2024

100. An organic transistor for detecting the oxidation of an organic sulfur compound at a solid-liquid interface and its chemical sensing application

Sasaki, Y.; Zhang, Y., Ohshiro, K.; Tsuchiya, K.; Lyu, X.; Kamiko, M., Ueno, Y., Tanaka, H., Minami, T.

Faraday Discuss., 2024, 250, 60-73.

Invited Paper for “Challenges and prospects in organic photonics and electronics Faraday Discussion”


99. Nanoarchitectonics of highly dispersed polythiophene on paper for accurate quantitative detection of metal ions

Sasaki, Y.; Lyu, X.; Kawashima, T.; Zhang, Y.; Ohshiro, K.; Okabe, K.; Tsuchiya, K.; Minami, T.

RSC Adv., 2024, 14, 5159-5166.

Invited Paper for Special Issue “Nanoarchitectonics Advances: Bridge over Nanotechnology and Materials Science


98. One-pot and facile preparation of gold nanoparticles using glutaraldehyde as a reducing and stabilizing agent for protein immobilization

Ahangari, H.; Majdi, H.; Nazari, M.; Hamishehkar, H.; Ehsani, A.; Minami, T.

Adv. Nat. Sci.: Nanosci. Nanotechnol., in press.


2023

97. Leaf-Inspired Host-Guest Complexation-Dictating Supramolecular Gas Sensors

Park, J.; Sasaki, Y.; Ishii, Y.; Murayama, S.; Ohshiro, K.; Nishiura, K.; Ikura, R.; Yamaguchi, H.; Harada, A.; Matsuba, G.; Washizu, H.; Minami, T.; Takashima, Y.

ACS Appl. Mater. Interfaces, 2023, 15, 39777–39785.


96. Zn(II)-Dipicolylamine-Attached Amphiphilic Polythiophene for Quantitative Pattern Recognition of Oxyanions in Mixtures

Sasaki, Y.; Ohshiro, K; Okabe, K.; Lyu, X.; Tsuchiya, K.; Matsumoto, A.; Takizawa, S.; Minami T.

Chem. Asian J., 2023, 18, e202300372.

Selected as “Chem. Asian J. VIP”

Invited Paper for Special Issue “Early Career Researchers 2023


95. Spontaneous preparation of a fluorescent ratiometric chemosensor using off-the-shelf materials for metal ions

Sasaki, Y.; Ohshiro, K.; Zhou, Q.; Lyu, X.; Tang, W.; Okabe, K.; Takizawa, S.; Minami T.

Chem. Commun., 2023, 59, 7747-7750.

Invited Paper for Special Issue “Chemosensors and Molecular Logic


94. Accurate cortisol detection in human saliva by an extended-gate-type organic transistor functionalized with a molecularly imprinted polymer

Sasaki, Y.; Zhang, Y.; Fan, H.; Ohshiro, K.; Zhou, Q.; Tang, W.; Lyu, X.; Minami T.

Sens. Actuators B Chem. 2023, 382, 133458.

Invited Paper for Special Issue “Analytical devices and sensors for point-of-need applications based on porous substrates


93. A Printed Colorimetric Chemosensor Array on A 96-microwell Paper Substrate for Metal Ions in River Water

Sasaki, Y.; Lyu, X.; Minami T.

Front. Chem. 2023, 11, 1134752.

Invited Paper for Special Issue “Editors Showcase


92. An extended-gate-type organic transistor-based enzymatic sensor for dopamine detection in human urine

Ohshiro, K.; Sasaki, Y.; Minami T.

Talanta Open 2023, 7, 100190.

Invited Paper for Special Issue “Recent Advances in Biosensors


91. Non-enzymatic detection of glucose levels in human blood plasma by a graphene oxide-modified organic transistor sensor

Fan, H.; Sasaki, Y.; Zhou, Q.; Tang, W.; Nishina, Y.; Minami T.

Chem. Commun. 2023, 59, 2425-2428.

Invited Paper for Special Issue “Sensors for Health


90. A Highly Accurate pH Detection for Sweat Analysis by Printed 96-Microwell Colorimetric Sensor Array

Sasaki, Y.; Lyu, X.; Minami T.

Anal. Sens. 2023, 3, e202200097.

Invited Paper for Special Issue “Optical Cross-Reactive Sensor Arrays


2022

89. Detection of cocoyl sarcosine utilizing an extended gate-type organic field-effect transistor functionalized with a copper(II)-dipicolylamine complex

Fan, H.; Zhou, Q.; Mitobe, R.; Tang, W.; Watanabe, K.; Nezaki, T.; Nagai, N.; Minami T.
MRS Commun. 2022, 12, 592–596.

Invited Paper for Special Issue “Early Career Materials Researcher


88. An organic transistor for the selective detection of a tropane alkaloid utilizing a molecularly imprinted polymer

Zhou, Q.; Sasaki, Y.; Ohshiro, K.; Fan, H.; Montagna, V.; Gonzato, C.; Haupt, K.; Minami, T.

J. Mater. Chem. B 2022, 10, 6808-6815.

Invited Paper for Special Issue “New era in advanced functional materials emerging from molecular imprinting and related techniques

87. “Printed 384-Well Microtiter Plate on Paper for Fluorescent Chemosensor Array in Food Analysis”

Lyu, X.; Sasaki, Y.; Ohshiro, K.; Tang, W.; Yuan, Y.; Minami, T.

Chem. Asian J. 2022, 17, e202200597.

Selected as “Chem. Asian J. VIP”

Invited Paper for Special Issue “Responsive Probes and “Molecular Bioimaging


86. A microfluidic organic transistor for reversible and real-time monitoring of H2O2 at ppb/ppt levels in ultrapure water

Ohshiro, K.; Sasaki, Y.; Zhou, Q; Didier, P.; Nezaki, T.; Yasuike, T.; Kamiko, M.; Minami, T.

Chem. Commun. 2022, 58, 5721-5724.

Invited Paper for Special Issue ChemComm Pioneering Investigators collection 2022


85.Multi-Oxyanion Detection by an Organic Field-Effect Transistor with Pattern Recognition Techniques and Its Application to Quantitative Phosphate Sensing in Human Blood Serum

Mitobe, R.; Sasaki, Y.; Tang, W.; Zhou, Q.; Lyu, X.; Ohshiro, K.; Kamiko, M.; Minami, T.

ACS Appl. Mater. Interfaces 2022, 14, 22903–22911.

Invited Paper for Special Issue Early Career Forum celebrating the contributions of early career investigators in ACS Applied Materials & Interface


84.Oxytocin detection at ppt level in human saliva by an extended-gate-type organic field-effect transistor

Ohshiro, K.; Sasaki, Y.; Zhou, Q.; Lyu, X.; Yamanashi, Y.; Nakahara, K.; Nagaoka, H.; Minami, T.

Analyst 2022, 147, 1055-1059.

Selected as HOT Articles 2022


83.Freshness monitoring of a raw fish by detecting biogenic amines using a gold nanoparticle-based colorimetric sensor array

Du, L.; Lao, Y.; Sasaki, Y.; Lyu, X.; Gao, P.; Wu, S.; Minami, T.; Liu, Y.

RSC Adv. 2022, 12, 6803-6810. (Invited Paper)


82.A minimized fluorescent chemosensor array utilizing carboxylate-attached polythiophenes on a chip for metal ions detection

Sasaki, Y.; Lyu, X.; Zhang, Z.; Minami, T.

Front. Chem. Sci. Eng. 2022, 16, 72-80.

Invited Paper for special issue “Molecular Sensors and Molecular Logic Gates”

This article was selected as FCSE Featured Article


2021

81.Real-Time Detection of Glyphosate by a Water-Gated Organic Field-Effect Transistor with a Microfluidic Chamber

Asano, K.; Didier, P.; Ohshiro, K.; Lobato-Dauzier, N.; Genot, A.; Minamiki, T.; Fujii, T.; Minami, T.

Langmuir 202137, 7305-7311.


80.Mathematical Modeling of a Supramolecular Assembly for Pyrophosphate Sensing

Emami, F.; Abdollahi, H.; Minami, T.; Peco, B.; Reliford, S.

Front. Chem. 2021, 9, 759714.


79.Toward Food Freshness Monitoring: Coordination Binding–Based Colorimetric Sensor Array for Sulfur-Containing Amino Acids

Lyu, X.; Tang, W.; Sasaki, Y.; Zhao, J.; Zheng, T.; Tian Y.; Minami, T.

Front. Chem. 2021, 9, 685783.

Invited Paper for Special Issue Suprastars of Chemistry


78.Detection of polyamines by an extended gate-type organic transistor functionalized with a carboxylate attached 1,3,4-thiadiazole derivative

Asano, K.; Sasaki, Y.; Zhou, Q.; Mitobe, R.; Tang, W.; Lyu, X.; Kamiko, M.; Tanaka, H.; Yamagami, K.; Hagiya, K.; Minami, T.

J. Mater. Chem. C 2021, 9, 11690-11697.

Invited Paper for Special Issue Journal of Materials Chemistry C Emerging Investigators 2021

Selected as Journal of Materials Chemistry C HOT Papers


77.A polythiophene-based chemosensor array for Japanese rice wine (sake) tasting

Lyu, X.; Matsumoto, A.; Minami, T.

Polym. J. 2021, 53, 1287-1291.

This article was selected as Rising Stars -2021-.

76.A Printed Paper-Based Anion Sensor Array for Multi-Analyte Classification: Application to On-Site Quantification of Glyphosate

Zhang, Z.; Hamedpor, V.; Lyu, X.; Sasaki, Y.; Minami, T.

ChemPlusChem 2021, 86, 798-802.

Highlighted by “Wiley ChemistryViews”


75.Light-inducible control of cellular proliferation and differentiation by a Hedgehog signaling inhibitor

Misawa, R.; Minami, T.; Okamoto, A.; Ikeuchi, Y.

Bioorg. Med. Chem. 2021, 38, 116144.


74.Flexible organic thin-film transistor immunosensor printed on a one-micron-thick film

Minamiki, T.; Minami, T.; Chen, Y. P.; Mano T.; Takeda, Y.; Fukuda, K.; Tokito, S.

Commun. Mater. 2021, 2, 8.

Highlighted by “Nature Portfolio Device & Materials Engineering Community”.


73.96-well Microtiter Plate Made of Paper: A Printed Chemosensor Array for Quantitative Detection of Saccharides

Lyu, X.; Hamedpour, V.; Sasaki, Y.; Zhang, Z.; Minami, T.

Anal. Chem.2021, 93, 1179-1184.


72.Easy-to-Prepare Mini-Chemosensor Array for Simultaneous Detection of Cysteine and Glutathione Derivatives

Sasaki, Y.; Lyu, X.; Kubota, R.; Takizawa, S.; Minami, T.

ACS Appl. Bio Mater. 2021, 4, 2113-2119.

Invited Paper for a Forum on ”Biospecies Sensors”


71.Extended gate-type organic transistor functionalized with molecularly imprinted polymer for taurine detection

Zhou, Q.; Wang, M.; Yagi, S.; Minami, T.

Nanoscale 2021, 13,100-107.

Invited Paper for Special Issue ”Nanoscale Emerging Investigators 2021″


70. Suppression of Malachite Green-Induced Toxicity to Human Liver Cells Utilizing Host-Guest Chemistry of Cucurbit[7]uril

Kubota, R.; Lyu, X.; Minami, T.

Anal. Sci. 2021, 37, 525-528.

Invited Paper for Special Issue ”Analytical Biomaterials”

2020

69.A Water‐Gated Organic Thin‐Film Transistor for Glyphosate Detection: A Comparative Study with Fluorescence Sensing

Sasaki, Y.; Asano, K.; Minamiki, T.; Zhang, Z.; Takizawa, S; Kubota, R.; Minami, T.

Chem. Eur. J. 2020, 26, 14525-14529. (Selected as Very Important Paper)


68.Supramolecular Sensor for Astringent Procyanidin C1: Fluorescent Artificial Tongue for Wine Components

Sasaki, Y.; Ito, S.; Zhang, Z.; Lyu, X.; Takizawa, S; Kubota, R.; Minami, T.

Chem. Eur. J. 2020, 26, 16236-16240.


67.Accurate chiral pattern recognition for amines from just a single chemosensor

Sasaki, Y.; Kojima, S.; Hamedpour, V.; Kubota, R.; Takizawa, S; Yoshikawa, I.; Houjou, H.; Kubo, Y.; Minami, T.

Chem. Sci. 2020, 11, 3790–3796.

Invited Paper for contribution to the special collection on “2020 Chemical Science HOT Article” and “The Mechanics of Supramolecular Chemistry”.


66.Development of a morphological color image processing algorithm for paper-based analytical devices

Hamedpour, V.; Oliveri P.; Malegori C.; Minami, T.

Sens. Actuators, B 2020, 322, 128571.


65.Porous microneedles on a paper for screening test of prediabetes

Lee, H.; Bonfante, G.; Sasaki, Y.: Takama, N.; Minami, T.; Kim, B.

Med. Devices Sens. 2020, 3, e10109.


64.A light-inducible Hedgehog signaling activator modulates proliferation and differentiation of neural cells

Misawa, R.; Minami, T.; Okamoto, A.; Ikeuchi, Y.

ACS Chem. Biol. 2020, 15, 1595–1603.


63.Non-enzymatic lactate detection by an extended-gate type organic FET

Didier, P.; Minami, T.

Semicond. Sci. Technol. 2020, 35, 11. (Invited Paper).


62.Fluorescence Anion Chemosensor Array Based on Pyrenylboronic Acid

Cao, Z.; Cao, Y.; Kubota, R.; Sasaki, Y.; Asano, K.; Lyu, X.; Zhoujie, Z.; Zhou, Q.; Zhao, X.; Xu, X.; Wu, S.; Minami, T.; Liu, Y.

Front. Chem. 2020, 8, 414.

Invited Paper for contribution to the research topic “Supramolecular Chemistry Using Boron”.


61.Microfluidic System with Extended-Gate-Type Organic Transistor for Real-Time Glucose Monitoring

Didier, P.; Lobato-Dauzier, N.; Clément, N.; Genot, A. J.; Sasaki, Y.; Leclerc, É.; Minamiki, T.; Sakai, Y.; Fujii, T.; Minami, T.

ChemElectroChem 2020, 7, 1332–1336.
Invited Paper for contribution to the special collection on “Electrochemical Sensing”.


60.Removal of Cr(VI) from Aqueous Solution by Polypyrrole/Hollow Mesoporous Silica Particles

Du, L.; Gao, P.; Liu, Y.; Minami, T.; Chuanbai, Yu.

Nanomaterials 2020, 10, 686.


59.An Extended-Gate Type Organic Transistor with a Solution Processable Small-Molecule Semiconductor Capable of Detecting Glutathione in Water

Asano, K.; Aiko, M.; Yamanashi, Y.; Sasaki, Y.; Nakahara, K.; Minamiki, T.; Koike, T.; Minami, T.

Jpn. J. Appl. Phys. 2020, 59, SGGG07.


58.Preparation of Polyaniline/Emulsion Microspheres Composite for Efficient Adsorption of Organic Dyes

Liu, Y.; Song, L.; Du, L.; Gao, P.; Liang, N.; Wu, S.; Minami, T.; Zang, L.; Yu, C.; Xu X.

Polymers 2020, 12, 167.


57.Highly Selective Detection of Copper(II) by a “Ligand-Free” Conjugated Copolymer in Nucleophilic Solvents

Deng, W.; Sun, P.; Fan, Q.; Zhang, L.; Minami, T.

Front. Chem. Sci. Eng. 2020, 14, 105–111.

Invited Paper for Special Issue on “Fluorescent Probes”, Guest Editors: Prof. Tony D. James and Dr. Adam C. Sedgwick


2019

56.Simplest Chemosensor Array for Phosphorylated Saccharides

Sasaki, Y.; Leclerc, É.; Hamedpour, V.; Kubota, R.; Takizawa, S.; Sakai, Y.; Minami, T.

Anal. Chem. 201991, 15570–15576.


55.Simple Colorimetric Chemosensor Array for Oxyanions: Quantitative Assay for Herbicide Glyphosate

Hamedpour, V.; Sasaki, Y.; Zhang, Z.; Kubota, R.; Minami, T.

Anal. Chem. 2019, 91, 13627–13632.


54.Facile Indicator Displacement Assay-based Supramolecular Chemosensor: Quantitative Colorimetric Determination of Xylose and Glucose in the Presence of Ascorbic Acid

Sasaki, Y.; Hamedpour, V.; Kubota, R.; He, Y.; Torii, Y.; Minami, T.

Chem. Lett. 2019, 48, 1368–1370.


53.A Saccharide Chemosensor Array Developed Based on an Indicator Displacement Assay Using a Combination of Commercially Available Reagents

Sasaki, Y.; Zhang, Z.; Minami, T.

Front. Chem. 2019, 7, 49.

Invited Paper for Special Issue “Rising Stars”.


52.An Organic FET with an Aluminum Oxide Extended Gate for pH Sensing

Minamiki, T.; Sekine, T.; Aiko, M.; Shiwei, S.; Minami, T.

Sens. Mater. 2019, 31, 99–106.

Invited Paper for Special Issue on “Micro/Nano Sensing Platforms Exploring Biomedical Innovation“, Guest Editor: Dr. Ryoji Kurita


51.Fabrication of a Flexible Biosensor based on an Organic Field-effect Transistor for Lactate Detection

Minamiki, T.; Tokito, S.; Minami, T.

Anal. Sci. 2019, 35, 103–106.

Invited Paper for Special Issue “Cell and Biomolecule Analysis”, Guest Editors: Profs. Keitaro Yoshimoto and Noritada Kaji


2018

50.Easy and green preparation of a graphene–TiO2 nanohybrid using a supramolecular biomaterial consisting of artificially bifunctionalized proteins and its application for a perovskite solar cell

Hashima, Y.; Ishikawa, Y.; Raifuku, I.; Inoue, I.; Okamoto, N.; Yamashita, I.; Minami, T.; Uraoka, Y.

Nanoscale 2018, 10, 19249–19253.


49.An electrolyte-gated polythiophene transistor for the detection of biogenic amines in water

Minamiki, T.; Hashima, Y.; Sasaki, Y.; Minami, T.

Chem. Commun. 2018, 54, 6907–6910.

Invited Paper for Special Issue “ChemComm Emerging Investigators 2018” and ChemComm Twitter advertised the article.


48.Anion Sensing by Fluorescent Expanded Calixpyrroles

Pushina, M.; Koutnik, P.; Nishiyabu, R.; Minami, T.; Savechenkov, P.; Anzenbacher, Jr., P.

Chem. Eur. J. 2018, 24, 4879–4884.


2017

47.An organic transistor-based electrical assay for copper(II) in water

Sasaki, Y.; Minami, T.; Minamiki, T.; Tokito, S.

Electrochemistry 2017, 85, 775–778.


46.Supramolecular Sensors for Opiates and Their Metabolites

Shcherbakova, E. G.; Zhang, B.; Gozem, S.; Minami, T.; Zavalij, P. Y.; Pushina, M.; Isaacs, L.; Anzenbacher, Jr., P.

J. Am. Chem. Soc. 2017139, 14954–14960.


45.One-step, green synthesis of a supramolecular organogelator based on mellitic triimide for the recognition of aromatic compounds

Mamada, M.; Minami, T.; Katagiri, H.; Omiya, T.; Tokito, S.

Chem. Commun. 2017, 53, 8834–8837.


44.A molecular self-assembled colourimetric chemosensor array for simultaneous detection of metal ions in water

Sasaki, Y.; Minamiki, T.; Tokito, S.; Minami, T.

Chem. Commun. 2017, 53, 6561–6564.


43.Label-Free Direct Electrical Detection of a Histidine-Rich Protein with Sub-Femtomolar Sensitivity using an Organic Field-Effect Transistor

Minamiki, T.+; Sasaki, Y.+; Tokito, S.; Minami, T.

ChemistryOpen 2017, 6, 472–475. (+These authors equally contributed to this paper.)

Invited Paper for contribution to Special Issue Chemosensors


42. “Fluorescence-Based Assay for Carbonic Anhydrase Inhibitors

Koutnik, P.; Shcherbakova, E. G.; Gozem, S.; Caglayan, M. G.; Minami, T.; Anzenbacher, Jr., P.

Chem 2017, 2, 271–282.


41. Development of a silver nanoparticle ink for fine line patterning using gravure offset printing

Shiokawa, D.; Izumi, K.; Sugano, R.; Sekine, T.; Minami, T.; Kumaki, D.; Tokito, S.

Jpn. J. Appl. Phys. 2017, 56, 05EA04.


2016

40. “Label-Free Detection of Human Glycoprotein (CgA) Using an Extended-Gated Organic Transistor-Based Immunosensor

Minamiki, T.; Minami, T.; Sasaki, Y.; Wakida, S.; Kurita, R.; Niwa, O.; Tokito, S.

Sensors 2016, 16, 2033.

graphical-abstract Invited Paper for Special Issue “Sensors for Glycoproteins and Glycated Proteins”, Guest Editor: Prof. Junichi Anzai.


39. “Quantitative analysis of the modeled ATP hydrolysis in water by a colorimetric sensor array

Minami, T.; Emami, F.; Nishiyabu, R.; Kubo, Y.; Anzenbacher, Jr., P.

Chem. Commun.  2016, 52, 7838–7841.

38_figure

Gold Open Access Article


38. “Synthesis and solid-state polymerization of diacetylene derivatives directly substituted by a phenylcarbazole moiety

Ikeshima, M.; Mamada, M.; Minami, T.; Tokito, S.; Okada, S.

Polym. J.  2016, 48, 1013–1018. 

journal_cover


37. “Toward Fluorescence-Based High-Throughput Screening for Enantiometric Excess in Amines Amino Acid Derivatives

Shcherbakova, E. G.; Brega, V.; Minami, T.; James, T. D.; Anzenbacher, Jr., P.

Chem. Eur. J. 2016, 22, 10074–10080.

Elena


36. “Selective nitrate detection by an enzymatic sensor based on an extended-gate type organic field-effect transistor

Minami, T.; Sasaki, Y.; Minamiki, T.; Wakida, S.; Kurita, R.; Niwa, O.; Tokito, S.

Biosens. Bioelectron. 2016, 81, 87–91.


35. “Electric Detection of Phosphate Anions in Water by an Extended-Gate Type Organic Field-Effect Transistor Functionalized with a Zinc(II)-Dipicolylamine Derivative

Minami, T.; Minamiki, T.; Tokito, S.

Chem. Lett. 2016, 45, 371−373.

35


34. “Determination of enantiomeric excess of carboxylates by fluorescent macrocyclic sensors

Akdeniz, A.; Minami, T.; Watanabe, S.; Yokoyama, M.; Ema, T.; Anzenbacher, Jr., P.

Chem. Sci. 2016, 7, 2016−2022.


33. “Detection of Mercury (II) Ion in Water using an Organic Field Effect Transistor with a Cysteine-immobilized Gold Electrode

Minami, T.; Minamiki, T.; Tokito, S.

Jpn. J. Appl. Phys. 2016, 55, 04EL02.

33


32. “Antibody- and Label-Free Phosphoprotein Sensor Device Based on an Organic Transistor

Minamiki, T.; Minami, T.; Koutnik, P.; Anzenbacher Jr., P.; Tokito, S.

Anal. Chem. 2016, 88, 1092−1095.

32


2015

31. “A mercury (II) ion sensor device based on an organic field effect transistor with an extended-gate modified by dipicolylamine

Minami, T.; Sasaki, Y.; Minamiki, T.; Koutnik, P.; Anzenbacher Jr., P.; Tokito, S.

Chem. Commun. 2015, 51, 17666−17668.


30. “A novel OFET-based biosensor for the selective and sensitive detection of lactate levels

Minami, T.; Sato, T.; Minamiki, T.; Fukuda, K.; Kumaki, D.; Tokito, S.

Biosens. Bioelectron. 2015, 74, 45−48.

BiosensBioelectron_74_45(2015)


29. “An anion sensor based on an organic field-effect transistor

Minami, T.; Minamiki, T.; Tokito, S.

Chem. Commun. 2015, 51, 9491−9494.

ChemCommun_51_9491(2015)


28. “An Organic Field-Effect Transistor with an Extended-Gate Electrode Capable of Detecting Human Immunoglobulin A

Minamiki, T.; Minami, T.; Sasaki, Y.; Kurita, R.; Niwa, O.; Wakida, S.; Tokito, S.

Anal. Sci. 2015, 31, 725−728.

AnalSci_31_725(2015) This article was selected as The TOP 3 papers most cited during 2016 in Analytical Sciences.


27. “An Extended-Gate Type Organic FET Based Biosensor for Detecting Biogenic Amines in Aqueous Solution

Minami, T.; Sato, T.; Minamiki, T.; Tokito, S.

Anal. Sci. 2015, 31, 721−724.

This article was selected as Hot Article.


26. “Determination of Enantiomeric Excess in Amine Derivatives Via Molecular Self-Assemblies

Shcherbakova, E. G.; Minami, T.; Brega, V.; James, T. D.; Anzenbacher Jr., P.

Angew. Chem. Int. Ed. 2015, 54, 7130−7133.

AngewChemIntEd_54_7130(2015-cover)


25. “Printed organic transistors with uniform electrical performance and their application to amplifiers in biosensors

Fukuda, K.; Minamiki, T.; Minami, T.; Watanabe, M.; Fukuda, T.; Kumaki, D.; Tokito, S.

Adv. Electron. Mater. 20151, 1400052.

AdvElectronMater_1_1400052(2015-cover)


24. “Synthesis and Solid-State Polymerization of Diacetylene Derivatives with an N-Carbazolylphenyl Group

Ikeshima, M.; Mamada, M.; Katagiri, H.; Minami, T.; Okada, S.; Tokito, S.

Bull. Chem. Soc. Jpn. 2015, 88, 843−849.

24


23. “Sensing of Enantiomeric Excess in Chiral Carboxylic Acids

Akdeniz, A.; Mosca, L.; Minami, T.; Anzenbacher, Jr., P.

Chem. Commun. 2015, 51, 5770−5773.

ChemCommun_51_5770(2015)


22. “Cysteine detection in water using an organic field-effect transistor with a gold extended-gate electrode

Minami, T.; Minamiki, T.; Fukuda, K.; Kumaki, D.; Tokito, S.

Jpn. J. Appl. Phys. 2015, 54, 04DK01.

Fig. 1.


21. “Extended-gate organic field-effect transistor for the detection of histamine in water

Minamiki, T.; Minami, T.; Yokoyama, D.; Fukuda, K.; Kumaki, D.; Tokito, S.

Jpn. J. Appl. Phys. 2015, 54, 04DK02.

Fig. 1.


2014

20. “An extended-gate type organic field effect transistor functionalised by phenylboronic acid for saccharide detection in water

Minami, T.; Minamiki, T.; Hashima, Y.; Yokoyama, D.; Sekine, T.; Fukuda, K.; Kumaki, D.; Tokito, S.

Chem. Commun. 2014, 50, 15613−15615.

ChemCommun_50_15613(2014)


19. “A Label-Free Immunosensor for IgG Based on an Extended-Gate Type Organic Field Effect Transistor

Minamiki, T.; Minami, T.; Kurita, R.; Niwa, O.; Wakida, S.; Fukuda, K.; Kumaki, D.; Tokito, S.

Materials 2014, 7, 6843−6852.

Materials_7_6843(2014)


18. “Intramolecular Indicator Displacement Assay for Anions: Supramolecular Sensor for Glyphosate

Minami, T.; Liu, Y.; Akdeniz, A.; Koutnik, P.; Esipenko, N. A.; Nishiyabu, R.; Kubo, Y.; Anzenbacher Jr., P.

J. Am. Chem. Soc. 2014, 136, 11396−11401.

ja-2014-04535q_0006


17. “Accurate and reproducible detection of proteins in water using an extended-gate type organic transistor biosensor

Minamiki, T.; Minami, T.; Kurita, R.; Niwa, O.; Wakida, S.; Fukuda, K.; Kumaki, D.; Tokito, S.

Appl. Phys. Lett. 2014, 104, 243703. 

This article was selected as the most-accessed articles in 2014, 2015, 2016 in Biophysics and Bio-Inspired Systems from Applied Physics Letters.


16. “Selective Anion Sensing by Chiral Macrocyclic Receptors with Multiple Hydrogen-Bonding Sites

Ema, T.; Okuda, K.; Watanabe, S.; Yamasaki, T.; Minami, T.; Esipenko, N. A.; Anzenbacher, Jr., P.

Org. Lett. 2014, 16, 1302−1305.

ol-2013-03643d_0008


15. “Anion Binding Modes in meso-Substituted Hexapyrrolic Calix-[4]pyrrole Isomers

Chang, K. C.; Minami, T.; Koutnik, P.; Savechenkov, P. Y.; Liu, Y.; Anzenbacher Jr., P.

J. Am. Chem. Soc. 2014, 136, 1520−1525.

ja-2013-11391c_0009


14. “Turn-on” fluorescent sensor array for basic amino acids in water

Minami, T.; Esipenko, N. A.; Zhang, B.; Isaacs, L.; Anzenbacher Jr., P.

Chem. Commun. 2014, 50, 61−63.

ChemCommun_50_61(2014)This article was highlighted in Chemistry World.


2013

13. “Multi-Analyte Sensing of Addictive Over-the-Counter (OTC) Drugs

Minami, T.; Esipenko, N. A.; Akdeniz, A.; Zhang, B.; Isaacs, L.; Anzenbacher Jr., P.

J. Am. Chem. Soc. 2013, 135, 15238−15243.

This article was highlighted in JACS Spotlights: J. Am. Chem. Soc. 2013, 135, 15965.


12. “Sensing of Carboxylate Drugs in Urine by a Supramolecular Sensor Array

Liu, Y.; Minami, T.; Nishiyabu, R.; Wang, Z.; Anzenbacher Jr., P.

J. Am. Chem. Soc. 2013, 135, 7705−7712.

JACS_135_7705(2013)


11. “First supramolecular sensor for phosphonate anions

Esipenko, N. A.; Koutnik, P.; Minami, T.; Mosca, L.; Lynch, V. M.; Zyryanov, G. V.; Anzenbacher Jr., P.

Chem. Sci. 2013, 4, 3617−3623.

11


10. “Leveraging Material Properties in Fluorescence Anion Sensor Arrays: A General Approach

Anzenbacher Jr., P.; Liu, Y.; Palacios, M.; Minami, T.; Wang, Z.; Nishiyabu, R.

Chem. Eur. J. 2013, 19, 8497−8506.

10

This article was highlighted in Chemistry Views.


2012

9. “Supramolecular Sensor for Cancer-Associated Nitrosamines

Minami, T.; Esipenko, N. A.; Zhang, B.; Kozelkova, M. E.; Isaacs, L.; Nishiyabu, R.; Kubo, Y.; Anzenbacher Jr., P.

J. Am. Chem. Soc. 2012, 134, 20021−20024.

9


2011

8. “Templated Synthesis of Glycoluril Hexamer and Monofunctionalized Cucurbit[6]uril Derivatives

Lucas, D.; Minami, T.; Iannuzzi, G.; Cao, L.; Wittenberg, J. B.; Anzenbacher Jr., P.; Isaacs, L.

J. Am. Chem. Soc. 2011, 133, 17966−17976.


7. “Selective anion-induced helical aggregation of chiral amphiphilic polythiophenes with isothiouronium-appended pendants

Minami, T.; Kubo, Y.

Supramol. Chem. 2011, 23, 13−18.


2010

6. “Shape-controllable gold nanocrystallization using an amphiphilic polythiophene

Minami, T.; Nishiyabu, R.; Iyoda, M.; Kubo, Y.

Chem. Commun. 2010, 46, 8603−8605.

ChemCommun_46_8603(2010)


5. “Fluorescence Sensing of Phytate in Water Using an Isothiouronium-attached Polythiophene

Minami, T.; Kubo, Y.

Chem. Asian J. 2010, 5, 605−611.

5


2009

4. “Amine-triggered molecular capsules using dynamic boronate esterification

Kataoka, K.; Okuyama, S.; Minami, T.; James, T. D.; Kubo, Y.

Chem. Commun. 2009, 13, 1682−1684.

ChemCommun_1682(2009)


2008

3. “Development of Chemical Stimuli-responsive Organogel Using Boronate Ester-substituted Cyclotricatechylene

Kubo, Y.; Yoshizumi, W.; Minami, T.

Chem. Lett. 2008, 37, 1238–1239.

3


2. “Isothiouronium-based amphiphilic gold nanoparticles with a colorimetric response to hydrophobic anions in water: a new strategy for fluoride ion detection in the presence of a phenylboronic acid

Minami, T.; Kaneko, K.; Nagasaki, T.; Kubo, Y.

Tetrahedron Lett. 2008, 49, 432−436.

2 (2)


2006

1. “Highly Selective Fluoride Ion Detection Based on a Fluorescent Alizarin-o-Aminomethylphenylboronic Acid Ensemble in Aqueous MeOH Solution

Kubo, Y.; Ishida, T.; Minami, T.; James, T. D.

Chem. Lett. 2006, 35, 996−997.

1_2


■ 著書・総説・解説記事 等

R60.Strategy for pattern recognition-driven optical chemosensing based on polythiophene

Mohan, B.; Sasaki, Y.; Minami, T.

Smart Mol. in press. (Invited Review)


R59. “文学研究と実験化学”

Minami, T.

Chemistry and Chemical Industry, 2024, 77, 236. (Invited Essay)


R58. Polymer Transistors for Chemical Sensing

Sasaki, Y.; Minami, T.

Kobunshi (High Polymers, Japan), 2024, 73, 73-74. (Invited Commentary)


R57.Fluorescent Chemosensor Arrays and Their Devices

Mohan, B.; Sasaki, Y.; Minami, T.

FLUORESCENT CHEMOSENSING AND BIOIMAGING, Chapter 12, in press, CRC Press. (Invited Book Chapter)


R56.Design of chemical sensors based on organic transistors for monitoring food safety and quality

Sasaki, Y.; Minami, T.

Sensor Technologies for Food Safety and Quality, in press, RSC books. (Invited Book Chapter)


R55.Methodologies for Spontaneous Preparation of Chemosensors and Their Arrays Using Off-the-Shelf Reagents

Sasaki, Y.; Minami, T.

ChemNanoMat, 2024, 10, e202300335. (Invited Review)


R54.Preparation of Molecular Self-Assembled Chemosensors without Organic Synthesis and Their Arrays

Sasaki, Y.; Minami, T.

Bunseki Kagaku, 2024, 72, 503-510. (Invited Review)


R53.Organic Transistor-based Chemical Sensors for Real-Sample Analysis

Sasaki, Y.; Minami, T.

Phys. Status Solidi A 2023, 220, 2300469.

Invited Review for Special Issue “Nano-Molecular Electronics


R52.第19回化学センサ国際会議レポート

Ueda, T.; Suzuki, M.; Shimanoe, K.; Tamura, S.; Hyodo, T.; Kida, T.; Yanagida, T.; Yoshikawa, G.; Feng, M.; Minami, T.; Okazaki, S.; Tanaka, T.; Suzuki, H.; Wang, J.

Chemical Sensors 2023, 39, 128-138. (Invited Report)


R51.パターン認識および機械学習は化学センサーにおいて万能か?

Sasaki, Y.; Minami, T.

Bunseki 2022, 7, 253–254. (Invited Commentary)


R50.第71回化学センサ研究発表会レポート

Shiigi, H.; Suzuki, M.; Tamura, S.; Inoue, K. Y.; Ueno, Y.; Yoshimi, Y.; Yoshida, Y.; Minami, T.; Itoh, T.; Iwata, T.; Matsuguchi, M.; Ueda, T.; Itagaki, Y.; Hashishin, T.

Chemical Sensors 2022, 38, 110-115. (Invited Report)


R49.第70回化学センサ研究発表会レポート

Yasukawa, T; Ueno, Y.; Suematsu, K.; Ueda, T.; Tamura, S.; Itou, T.; Itagaki, Y.; Minami, T.; Hideshima, S.; Kohji, M.; Suzuki, M.; Tanaka, T.

Chemical Sensors 2022, 38, 39–43. (Invited Report)


R48.オキシトシンセンサデバイス開発と研究展望

Horiuchi, S.; Shishido, E.; Sasaki, Y.; Minami, T.

センサ医工学 -最新医療センシングの研究開発-, シーエムシー出版 (2022), pp.58-66. (Invited Book Chapter)

R47.Polymer Transistor-based Chemical Sensors Utilizing Organic Thin Films

Sasaki, Y.; Mitobe, R.; Minami, T.

J. Adhes. Soc. Jpn. 2022, 58, 191–198. (Invited Review)

R46.Supramolecular optical sensor arrays for on-site analytical devices

Sasaki, Y.; Lyu, X.; Tang, W.; Wu, H.; Minami, T.

J. Photochem. Photobiol. C 2022, 51, 100475. (Invited Review)


R45.Editorial: Frontiers in Chemistry-Rising Stars: Asia

Guo, L.; Mohanty, J.; Liu, W.; Yonar, T.; Sun, H.; Minami, T.; Sleymani, J.; Moosa, B.; Zhou, Q.

Front. Chem. 2021, 9, 811459.


R44.On-site Chemosensor Arrays for Qualitative and Quantitative Detection with Imaging Analysis

Sasaki, Y.; Lyu, X.; Yuan, Y.; Minami, T.

Bunseki Kagaku 2021, 70, 691-701. (Invited Review)


R43.Polythiophene-based Chemical Sensors: Toward On-site Supramolecular Analytical Devices

Sasaki, Y.; Lyu, X.; Tang, W.; Wu, H.; Minami, T.

Bull. Chem. Soc. Jpn. 2021, 94, 2613–2622.

Invited Paper for Special issueMasterpiece Materials with Functional Excellence Guest Editors: Profs. Susumu Kitagawa.
R42.Minimum Chemosensor Arrays with Molecular Self-Assemblies

Sasaki, Y.; Minami, T.

Chemistry & Chemical Industry 2021, 74, 663. (Invited Commentary)


R41.Toward the Realization of Organic Transistor-Based Ubiquitous Chemical Sensors

Mitobe, R.; Sasaki, Y.; Minami, T.

J. Jpn. Inst. Electron. Packag. 2021, 24, 361–368. (Invited Review)

R40.Chemical sensing based on water-gated polythiophene thin-film transistors

Minami, T.; Tang, W.; Asano, K.

Polym. J. 2021, 53, 1315–1323. (Invited Paper)


R39.A fluorescent chemosensor array for the detection of sulfur-containing amino acids

Sasaki, Y.; Minami, T.

SEISAN KENKYU 2021, 73, 179–183.


R38.Indicator Displacement Assay-based Chemosensor Arrays for Saccharides using Off-the-Shelf Materials toward Simultaneous On-site Detection on Paper

Sasaki, Y.; Lyu, X.; Zhou, Q.; Minami, T.

Chem. Lett. 2021, 50, 987-995. (Invited Commentary)

AdvElectronMater_1_1400052(2015-cover)

Invited Paper for Vol. 50 Commemorative Highlight Review


R37.第69回化学センサ研究発表会レポート

Yasukawa, T.; Shimizu, Y.; Tanaka, T.; Tamura, S.; Ueda, T.; Kida, T.; Okazaki, S.; Masuda, Y.; Minami, T.; Yoshimi, Y.; Ueno, Y.

Chemical Sensors 2021, 37, 114-119. (Invited Report)


R36.有機トランジスタ型化学センサの開発動向

Asano, K.; Minamiki, T. Minami, T.

ウェアラブル医療・ヘルスケア機器の技術と市場, シーエムシー出版(2020) (Invited Book Chapter)


R35.Organic Transistor-based Chemical Sensors with Self-Assembled Monolayers

Minami, T.

J. Incl. Phenom. Macrocycl. Chem. 2021, 101, 1-18.

width=

Invited Paper for “SHGSC Japan Award of Excellence 2020”


R34.PRiME2020学会レポート

Hideshima, S.; Maeda, Y.; Kurashina, M.; Shiba, S.; Suzuki, M.; Kawaguchi, T.; Itagaki, Y.; Sugematsu, K.; Minami, T.; Ueda, T.; Yoshimi, Y.

Chemical Sensors 2020, 36, 134-141. (Invited Report)


R33.Molecular self-assembled chemosensors and their arrays

Sasaki Y.; Kubota R.; Minami, T.

Coord. Chem. Rev. 2021, 429, 213607. AdvElectronMater_1_1400052(2015-cover)

Invited Paper for Special issue “Recent progress on molecular sensors and molecular logic gates”


R32.Extended-gate type Organic Field-effect Transistors for the Detection of Potential Psychological Stress Markers

Didier, P.; Blomenkamp H.; Kubota, R.; Sasaki, Y.; Minami, T.

Sens. Mater. 2021, 33, 211-222.

Special Issue on “Sensors and Materials Emerging Investigators”in Japan, Guest Editor: Tsuyoshi Minami.


R31.Qualitative and Quantitative Detection of Saccharides Utilizing Colorimetric Chemosensors and Their Applications to Paper-based Chemosensor Array Devices

Sasaki, Y.; Lyu, X.; Hamedpour, V.; Minami, T.

J. Imag. Soc. Jpn. 2020, 59, 541–545 (Imaging Highlight, Invited Commentary).


R30.Design of Supramolecular Sensors and Their Applications to Optical Chips and Organic Devices

Minami, T.

Bull. Chem. Soc. Jpn. 2021, 94, 24–33 (Award Account).


R29.Protein Assays on Organic Electronics: Rational Device and Material Designs for Organic Transistor-Based Sensors

Minamiki, T.; Kubota, R.; Sasaki, Y.; Asano, K.; Minami, T.

ChemistryOpen 2020, 9, 573−581 (Invited Minireview, selected as Frontispice).


R28.第66回化学センサ研究発表会レポート

Iwata, T.; Itagaki, Y.; Obata, K.; Yasukawa, T.; Shimizu, Y.; Suematsu, K.; Ueda, T.; Wakida, S.; Ueno, Y.; Yoshimi, Y.; Nagamine, K.; Minami, T.

Chemical Sensors 2019, 35, 139–144. (Invited Report)


R27.有機トランジスタ型化学センサの開発動向

Asano, K.; Minamiki, T. Minami, T.

BIOINDUSTRY 2020, 37, 57–65. (Invited Review)


R26.化学とマイクロ・ナノシステム学会 第40回研究会 若手企画開催報告

Minami, T.; Ikeuchi, Y.; Kim, S.

化学とマイクロ・ナノシステム 2020, 19, 3–4. (Invited Report)


R25.Organic Transistor-Based Protein Sensors Functionalized with Antibodies and Artificial Receptor Materials

Minamiki, T.; Asano, K.; Sasaki, Y.; Kubota, R.; Minami, T.

Chemical Sensors 2019, 35, 131–138 (Invited Commentary)


R24.Chemical Sensing Platforms Based on Organic Thin-Film Transistors Functionalized with Artificial Receptors

Kubota, R.; Sasaki, Y.; Minamiki, T.; Minami, T.

ACS Sens. 2019, 4, 2571–2587. (Invited Perspective)

AdvElectronMater_1_1400052(2015-cover)


R23.電解質ゲート高分子薄膜トランジスタ型化学センサの創製

Minami, T.

Annual Review of Research Group on Supramolecules 2018, 39, 8−9. (Invited Commentary)


R22.Development of polymer field-effect transistor-based immunoassays

Minamiki, T.; Sasaki, Y.; Su, S.; Minami, T.

Polym. J. 2019, 51, 1–9. (Invited and Highlighted Review)

AdvElectronMater_1_1400052(2015-cover)


R21.Development of enzymatic sensors based on extended-gate type organic field-effect transistors

Minami, T.; Minamiki, T.; Sasaki, Y.

Electrochemistry 2018, 86, 303–308. (Invited and Featured Article)

AdvElectronMater_1_1400052(2015-cover)


R20.Development of Supramolecular Sensor Devices Based on Organic Transistors

Sasaki, Y.; Minamiki, T.; Minami, T.

J. Synth. Org. Chem. Jpn. 2018, 76, 1086–1097. (Invited Review)

AdvElectronMater_1_1400052(2015-cover)


R19.Fabrication of Supramolecular Sensor Arrays Using Intramolecular/Intermolecular Interactions

Sasaki, Y.; Minami, T.

Bunseki Kagaku 2018, 67, 519–529 (Invited Review).


R18.Fabrication of a Molecular Self-assembled Colorimetric Chemosensor Array and Its Application for Simultaneous Detection of Metal Ions in an Aqueous Solution

Sasaki, Y.; Minami, T.

SEISAN KENKYU 2018, 70, 193–196. (Invited Commentary)


R17.第17回化学センサ国際会議レポート

Ueda, T.; Matsukura, H.; Yasukawa, T.; Minami, T.; Itoh, T.; Iwata, T.; Akamatsu, T.; Goda, T.; Y. Inoue, K.; Toma, K.; Yoshimi, Y.; Niwa, O.

Chemical Sensors 2018, 34, 118-133. (Invited Report)


R16.Development of Organic Thin-film Transistors with Molecular Recognition Ability for Chemical Sensing

Minamiki, T.; Minami, T.

Bunseki Kagaku 2018, 67, 229–237. (Invited Commentary)


R15.第63回化学センサ研究発表会レポート

Yoshimi, Y.; Minami, T.; Niwa, O.; Shirai, O.; Hasebe, Y.; Kawaguchi, T.; Y. Inoue, K.; Matsuura, H.; Yasuzawa, M.; Hyodo, T.; Itagaki, Y.; Tamura, S.; Hashishin, T.; Suematsu, K.

Chemical Sensors 2018, 34, 69-74. (Invited Report)


R14.π共役高分子の構造制御による光学ケモセンサー及び電気化学センサーデバイスの開発

Minami, T.; Minamiki, T.

Bunseki 2017, 10, 497–500. (Invited Commentary)


R13.有機FET型化学センサ

Minami, T.; Minamiki, T.; Tokito, S.

ウェアラブル機器の開発とマーケット・アプリケーション・法規制動向 ~ヘルスケア分野を中心として~, 第1章 第3節, センサ技術, R&D支援センター (2017). (Invited Book Chapter)


R12.第61回化学センサ研究発表会レポート

Ueda, T.; Ito, T.; Hyodo, T.; Hashishin, T.; Nagao, M.; Obata, K.; Matsuura, H.; Shiku, H.; Arimoto, S.; Yoshimi, Y.; Kubo, I.; Saito, M.; Niwa, O.; Minami, T.; Muguruma, H.

Chemical Sensors 201733, 55–61. (Invited Report)


R11.Developments of Flexible Printed Organic FET Biosensors

Minami, T.; Minamiki, T.; S. Tokito.

OYO BUTURI 2017, 86, 131–135. (Invited Commentary)


R10.有機FET型化学センサ

Minami, T.; Minamiki, T.; Tokito, S.

IoTを指向するバイオセンシング・デバイス技術, 第2章 フレキシブルデバイス, 第2節, シーエムシー出版 (2016). (Invited Book Chapter)


R9.第60回化学センサ研究発表会レポート

Kato, D.; Muguruma, H.; Niwa, O.; Mizutani, F.; Kurita, R.; Hasebe, Y.; Inoue, Y. K.; Yoshimi, H.; Morimitsu, M.; Minami, T.; Shimizu, Y.; Nonaka, A.; Toma, K.; Maruo, Y.; Hyodo, T.; Nishibori, M.; Ito, T.; Obata, K.

Chemical Sensors 2016, 32, 66−73. (Invited Report)


R8.Exploratory Research of Chemical Sensors Based on Organic Transistors with Self-Assembled Monolayer-Functionalized Electrodes

Minami, T.

Kobunshi Ronbunshu 2016, 73, 453−463. (The review was selected as Special Issue of New Wave in Polymer Science and Engineering 2016)


R7.リレーエッセイ「流浪人研究者のつぶやき」

Minami, T.

Bunseki 2016, 6, 217. (Invited Essay)


R6.4節 有機トランジスタ型化学センサの開発動向

Minami, T.; Minamiki, T.; S. Tokito

ヘルスケアを支えるバイオ計測, 5章 「ウエアラブル」への展開, シーエムシー出版 (2016). (Invited Book Chapter)


R5.Developments of Flexible Printed Organic FET Biosensors

S. Tokito.; Minamiki, T.; Minami, T.

J. Img. Soc. Jpn. 2016, 55, 64−75. (Invited Commentary)


R4.ベンゼン環一つで構成された緑色蛍光色素

Minami, T.

Bunseki 2015, 9, 401. (Invited Commentary)


R3.第57回化学センサ研究発表会レポート

Ohinishi, H.; Mori, M.; Kuribayashi, H.; Ikeda, H.; Tamura, S.; Minami, T.; Yoshimi, Y.; Kubo, I.; Kato, D.; Inoue, Y. K.; Niwa, O.; Anzai, J.; Wakida, S.; Yasuzawa, M.; Suzuki, M.

Chemical Sensors 2014, 30, 149−156. (Invited Report)


R2.Fundamental research of biosensors and chemical sensors based on organic transistors

Minami, T.; Minamiki, T.; Tokito, S.

Chemical Sensors 2014, 30, 139−148. (Invited Commentary)


R1.化学刺激応答型π共役ポリマーのトポロジー制御とその応用

Minami, T.; Nishiyabu, R.; Kubo, Y.

Expected Materials for the Future 2010, 10, 10−16. (Invited Commentary)


■ 査読付き国際会議論文

P1.Sensitive Detection of Glyphosate by a Water-Gated Organic Transistor

Asano, K.; Sasaki, Y.; Minamiki, T.; Minami, T.

ECS Trans. 2020, 98, 41.