Flexible and highly selective NO2 gas sensor based on direct-ink-writing of eco-friendly graphene oxide for smart wearable application

被引:1
|
作者
Khan, Junaid [1 ,2 ,3 ]
Rezo, Vratislav [3 ]
Vincze, Tomáš [3 ]
Weis, Martin [3 ]
Momin, Syed Abdul [4 ]
El-Atab, Nazek [4 ]
Jaafar, Mariatti [1 ]
机构
[1] School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia, Nibong Tebal Penang,14300, Malaysia
[2] MIND-IN2UB, Department of Electronics and Biomedical Engineering, University of Barcelona, Spain
[3] Institute of Electronics and Photonics, Slovak University of Technology, Ilkovicova 3, Bratislava,81219, Slovakia
[4] Smart, Advanced Memory Devices and Applications (SAMA) Laboratory, Electrical and Computer Engineering Program, Computer Electrical Mathematical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal,23955, Sau
关键词
Digital printing - Graphene oxide - Nitrogen oxides - Photocomposition;
D O I
10.1016/j.chemosphere.2024.143618
中图分类号
学科分类号
摘要
Nitrogen dioxide (NO2) is a major cause of respiratory disorders in outdoor and indoor environments. Real-time NO2 monitoring using nonintrusive wearable devices can save lives and provide valuable health data. This study reports a room-temperature, wearable, and flexible smart NO2 gas sensor fabricated via cost-effective printing technology on a polyimide substrate. The sensor uses alkali lignin with edge-oxidised graphene oxide (EGO-AL) ink, demonstrating a sensitivity of 1.70% ppm⁻1 and a detection limit of 12.70 ppb, with excellent selectivity towards NO2. The high sensing properties are attributed to labile oxygen functional groups from GO and alkali lignin, offering abundant interacting sites for NO2 adsorption and electron transfer. The sensor fully recovers to the baseline after heat treatment at 150 °C, indicating its reusability. Integration into lab coats showcased its wearable application, utilising a flexible printed circuit board to wirelessly alert the wearer via cell phone to harmful NO2 levels (>3 ppm) in the environment. This smart sensing application underscores the potential for practical, real-time air quality monitoring, personal safety enhancement, and health management. © 2024 The Authors
引用
收藏
相关论文
共 21 条
  • [1] Eco-friendly alkali lignin-assisted water-based graphene oxide ink and its application as a resistive temperature sensor
    Khan, Junaid
    Mariatti, M.
    Zubir, Syazana A.
    Rusli, Arjulizan
    Manaf, Asrulnizam Abd
    Khirotdin, Rd Khairilhijra
    NANOTECHNOLOGY, 2024, 35 (05)
  • [2] Direct transfer of CVD-grown graphene onto eco-friendly cellulose film for highly sensitive gas sensor
    Kim, Yujeong
    Kim, Seunghyun
    Lee, Wi Hyoung
    Kim, Hyungsup
    CELLULOSE, 2020, 27 (03) : 1685 - 1693
  • [3] Direct transfer of CVD-grown graphene onto eco-friendly cellulose film for highly sensitive gas sensor
    Yujeong Kim
    Seunghyun Kim
    Wi Hyoung Lee
    Hyungsup Kim
    Cellulose, 2020, 27 : 1685 - 1693
  • [4] Development of Graphene Oxide Based Capacitive Gas Sensor for Selective Detection of NO2
    Gunasena, R. G. S. P.
    Deemantha, M. B. A.
    Amarasinghe, D. A. S.
    Attygalle, D.
    2019 MORATUWA ENGINEERING RESEARCH CONFERENCE (MERCON) / 5TH INTERNATIONAL MULTIDISCIPLINARY ENGINEERING RESEARCH CONFERENCE, 2019, : 594 - 598
  • [5] Highly sensitive, selective, repeatable and flexible chemiresistive NO2 sensor based on reduced graphene oxide/free based porphyrin composite
    Abhaysinh S. Khune
    Rameshwar P. Bongane
    Vijaykiran N. Narwade
    Nikesh N. Ingle
    B. N. Dole
    Meng-Lin Tsai
    Tibor Hianik
    Mahendra D. Shirsat
    Journal of Materials Science: Materials in Electronics, 2024, 35
  • [6] Highly sensitive, selective, repeatable and flexible chemiresistive NO2 sensor based on reduced graphene oxide/free based porphyrin composite
    Khune, Abhaysinh S.
    Bongane, Rameshwar P.
    Narwade, Vijaykiran N.
    Ingle, Nikesh N.
    Dole, B. N.
    Tsai, Meng-Lin
    Hianik, Tibor
    Shirsat, Mahendra D.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2024, 35 (09)
  • [7] Highly Sensitive and Selective Room Temperature-Operated NO2 Sensor Based on Eco-Friendly Water Processed Low Voltage Operable OFET
    Kuamr, Prashant
    Mishra, Vishwambhar Nath
    Prakash, Rajiv
    IEEE SENSORS JOURNAL, 2023, 23 (12) : 12544 - 12551
  • [8] Highly flexible, mechanically stable, and sensitive NO2 gas sensors based on reduced graphene oxide nanofibrous mesh fabric for flexible electronics
    Park, Hyung Ju
    Kim, Wan-Joong
    Lee, Hyung-Kun
    Lee, Dae-Sik
    Shin, Jong-Ho
    Jun, Yongseok
    Yun, Yong Ju
    SENSORS AND ACTUATORS B-CHEMICAL, 2018, 257 : 846 - 852
  • [9] Reduced Graphene Oxide/Mesoporous ZnO NSs Hybrid Fibers for Flexible, Stretchable, Twisted, and Wearable NO2 E-Textile Gas Sensor
    Li, Weiwei
    Chen, Ruosong
    Qi, Wenzhi
    Cai, Li
    Sun, Yilin
    Sun, Mengxing
    Li, Chuang
    Yang, Xiaokuo
    Xiang, Lan
    Xie, Dan
    Ren, Tianling
    ACS SENSORS, 2019, 4 (10) : 2809 - 2818
  • [10] Eco-friendly triboelectric nanogenerator for self-powering stacked In2O3 nanosheets/PPy nanoparticles-based NO2 gas sensor
    Zhang, Hao
    Zhang, Dongzhi
    Yang, Yan
    Zhou, Lina
    Liu, Yukun
    Liu, Wenzhe
    Sun, Yuehang
    Guo, Yihong
    Ji, Yuncheng
    NANO ENERGY, 2024, 128