Room‐Temperature Hydrogen Sensor with High Sensitivity and Selectivity using Chemically Immobilized Monolayer Single‐Walled Carbon Nanotubes

Author:

Girma Henok Getachew1,Park Kwang Hun1,Ji Dongseob2,Kim Yejin1,Lee Hye Min13,Jeon Seungju1,Jung Seo‐Hyun1,Kim Jin Young3,Noh Yong‐Young2ORCID,Lim Bogyu14ORCID

Affiliation:

1. Research Center for Advanced Specialty Chemicals Korea Research Institute of Chemical Technology (KRICT) Ulsan 44412 Republic of Korea

2. Department of Chemical Engineering Pohang University of Science and Technology (POSTECH) Pohang Gyeongbuk 37673 Republic of Korea

3. School of Energy and Chemical Engineering Ulsan National Institute of Science and Technology (UNIST) Ulsan 44919 Republic of Korea

4. Department of Engineering Chemistry Chungbuk National University Chungbuk 28644 Republic of Korea

Abstract

AbstractAlthough semiconducting single‐walled carbon nanotubes (sc‐SWNTs) exhibit excellent sensing properties for various gases, commercialization is hampered by several obstacles. Among these, the difficulty in reproducibly fabricating sc‐SWNT films with uniform density and thickness is the main one. Here, a facile fabrication method for sc‐SWNT‐based hydrogen (H2) sensors with excellent reproducibility, high sensitivity, and selectivity against CO, CO2, and CH4 is reported. Uniform‐density and monolayer sc‐SWNT films are fabricated using chemical immobilized through the click reaction between azide‐functionalized polymer‐wrapped sc‐SWNTs and immobilized alkyne polymer on a substrate before decorating with Pd nanoparticles (0.5–3.0 nm). The optimized sc‐SWNT sensor has a high room‐temperature response of 285 with the response and recovery times of 10 and 3 s, respectively, under 1% H2 gas in air. In particular, this sensor demonstrates highly selective H2 detection at room temperature (25 °C), compared to other gases and humidity. Therefore, the chemical immobilization of the monolayer SWNT films with reproducible and uniform density has the potential for large‐scale fabrication of robust room‐temperature H2 sensors.

Funder

Korea Research Institute of Chemical Technology

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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