Flexible Low-Temperature Ammonia Gas Sensor Based on Reduced Graphene Oxide and Molybdenum Disulfide

被引:19
|
作者
Ren, Zhe [1 ]
Shi, Yunbo [1 ]
Song, Tianming [1 ]
Wang, Tian [1 ]
Tang, Bolun [1 ]
Niu, Haodong [1 ]
Yu, Xiaoyu [2 ]
机构
[1] Harbin Univ Sci & Technol, Higher Educ Key Lab Measuring & Control Technol &, Harbin 150080, Peoples R China
[2] Sun Yat Sen Univ, Sch Atmospher Sci, Guangzhou 519000, Peoples R China
基金
美国国家科学基金会;
关键词
flexible electronics; micro-electro-mechanical system; reduced graphene oxide; NH3 gas sensor; molybdenum disulfide; HIGHLY TRANSPARENT; LAYER MOS2; PERFORMANCE; STRAIN;
D O I
10.3390/chemosensors9120345
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Owing to harsh working environments and complex industrial requirements, traditional gas sensors are prone to deformation damage, possess a limited detection range, require a high working temperature, and display low reliability, thereby necessitating the development of flexible and low-temperature gas sensors. In this study, we developed a low-temperature polyimide (PI)-based flexible gas sensor comprising a reduced graphene oxide (rGO)/MoS2 composite. The micro-electro-mechanical system technology was used to fabricate Au electrodes on a flexible PI sheet to form a "sandwiched" sensor structure. The rGO/MoS2 composites were synthesized via a one-step hydrothermal method. The gas-sensing response was the highest for the composite comprising 10% rGO. The structure of this material was characterized, and a PI-based flexible gas sensor comprising rGO/MoS2 was fabricated. The optimal working temperature of the sensor was 141 degrees C, and its response-recovery time was significantly short upon exposure to 50-1500 ppm NH3. Thus, this sensor exhibited high selectivity and a wide NH3 detection range. Furthermore, it possessed the advantages of low power consumption, a short response-recovery time, a low working temperature, flexibility, and variability. Our findings provide a new framework for the development of pollutant sensors that can be utilized in an industrial environment.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Reduced Graphene Oxide-Based Flexible Pressure Sensor for Biomedical Applications
    Sanginario, Alessandro
    Buraioli, Irene
    Boscherini, Marco
    Vitale, Stefania
    Sabrina, Conoci
    Botto, Daniele
    Leone, Dario
    Milan, Alberto
    Ciesielski, Artur
    Samori, Paolo
    Demarchi, Danilo
    IEEE SENSORS JOURNAL, 2024, 24 (22) : 37090 - 37103
  • [42] Flexible Transparent Reduced Graphene Oxide Sensor Coupled with Organic Dye Molecules for Rapid Dual-Mode Ammonia Gas Detection
    Le Thai Duy
    Tran Quang Trung
    Vinh Quang Dang
    Hwang, Byeong-Ung
    Siddiqui, Saqib
    Son, Il-Yung
    Yoon, Seung Kyun
    Chung, Dong June
    Lee, Nae-Eung
    ADVANCED FUNCTIONAL MATERIALS, 2016, 26 (24) : 4329 - 4338
  • [43] Correction: Corrigendum: A low-temperature method to produce highly reduced graphene oxide
    Hongbin Feng
    Rui Cheng
    Xin Zhao
    Xiangfeng Duan
    Jinghong Li
    Nature Communications, 4
  • [44] Sparked Reduced Graphene Oxide for Low-Temperature Sodium Beta Alumina Batteries
    Jin, Dana
    Lee, Hae Gon
    Choi, Sangjin
    Kim, Sungsoon
    Lee, Younki
    Son, Sori
    Park, Yoon-Cheol
    Lee, Joon Sang
    Jung, Keeyoung
    Shim, Wooyoung
    NANO LETTERS, 2019, 19 (12) : 8811 - 8820
  • [45] FLEXIBLE AMMONIA GAS SENSOR BASED ON POLYANILINE
    Posta, Alexandr
    Nahlik, Josef
    Laposa, Alexandr
    Voves, Jan
    10TH ANNIVERSARY INTERNATIONAL CONFERENCE ON NANOMATERIALS - RESEARCH & APPLICATION (NANOCON 2018 (R)), 2019, : 272 - 276
  • [46] Temperature sensor based on IR-laser reduced Graphene Oxide
    Silipigni, L.
    Salvato, G.
    Fazio, B.
    Di Marco, G.
    Proverbio, E.
    Cutroneo, M.
    Torrisi, A.
    Torrisi, L.
    JOURNAL OF INSTRUMENTATION, 2020, 15 (04):
  • [47] Fast and green synthesis of iron oxide using low-power laser sintering on reduced graphene oxide sensor for ammonia gas detection
    Nguyen, Nhat Minh
    Dang, Vinh Quang
    Tran, Cong Khanh
    La, Phan Phuong Ha
    Bui, Thi Thu Thao
    Vuong, Thanh Tuyen
    Seo, Hyungtak
    Duy, Le Thai
    MATERIALS CHEMISTRY AND PHYSICS, 2024, 322
  • [48] Room-temperature flexible ammonia sensor based on SnO2 quantum dots modified graphene oxide
    Fan, Shuxing
    Liu, Qingyu
    Ramakrishna, Seeram
    Tang, Wei
    VACUUM, 2023, 216
  • [49] A high-sensitive room temperature gas sensor based on cobalt phthalocyanines and reduced graphene oxide nanohybrids for the ppb-levels of ammonia detection
    Guo, ZhiJiang
    Wang, Bin
    Wang, Xiaolin
    Li, Yong
    Gai, Shijie
    Wu, Yiqun
    Cheng, XiaoLi
    RSC ADVANCES, 2019, 9 (64) : 37518 - 37525
  • [50] Low Cost, Flexible, Room Temperature Gas Sensor: Polypyrrole-Modified Laser-Induced Graphene for Ammonia Detection
    Santos-Ceballos, Jose Carlos
    Salehnia, Foad
    Romero, Alfonso
    Vilanova, Xavier
    Llobet, Eduard
    IEEE SENSORS JOURNAL, 2024, 24 (07) : 9366 - 9374