Inkjet-Printed Graphene-based Flexible Humidity Sensor for Environmental Applications

被引:0
|
作者
Sulaiman, Suraya [1 ]
Rashid, Nora'zah Abdul [1 ]
Aziz, Aiman Sajidah Abdul [1 ]
Jun, Liew Qiao [1 ]
Jaafar, Syed Muhammad Hafiz Syed Mohd [1 ]
机构
[1] MIMOS Berhad, Nanoelect Lab, Kuala Lumpur, Malaysia
关键词
flexible; printed; multilayer; graphene; humidity;
D O I
10.1109/icse49846.2020.9166876
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this study, a fully flexible inkjet-printed graphene-based capacitive humidity sensor is investigated using graphene oxide (GO) as sensing material mixed with Polyacrylic Acid, PAA. The printed humidity sensor consists of i) an optimally designed interdigitated electrode (IDE) made from reduced graphene oxide conductive ink material decorated with silver nanoparticle (rGO/Ag), ii) inkjet-printed GO as sensing material and iii) polyethylene terephthalate, PET as flexible substrate. The conductive ink is synthesize in house with a stable and consistent temperature setting which has successfully improve the yield peribrmance of the graphene-based inkjet and the method of preparation has prevent the ink from agglomeration during printing. The multilayer inkjet-printed GO on top of the rGO/Ag IDE is employ to increase the contact area between the sensing layer and water vapor, thus leading to a high sensitivity sensor. The results shows that as the relative humidity is varies in the range of 30%RH to 90%RH, the proposed humidity sensor is able to achieve a highest sensitivity of 0.15pF/%RH at 50 degrees C. The sensor show a stable capacitance value with a linear output at low humidity and increase exponentially at above 60%RH. The developed sensor also show a good temperature dependence at temperature below 60 degrees C and humidity lower than 70%RH.
引用
收藏
页码:148 / 151
页数:4
相关论文
共 50 条
  • [31] Inkjet-printed graphene oxide memory cells on paper for flexible electronics
    Salaoru, Iulia
    Worsley, Myles
    Fern, George
    Paul, Shashi
    DISCOVER APPLIED SCIENCES, 2025, 7 (03)
  • [32] Fabrication of Inkjet-printed Flexible Electrode
    Zhou Y.-C.
    Ning H.-L.
    Wang Y.-P.
    Tao R.-Q.
    Chen J.-Q.
    Wang L.
    Yao R.-H.
    Peng J.-B.
    Faguang Xuebao/Chinese Journal of Luminescence, 2019, 40 (09): : 1146 - 1158
  • [33] Inkjet-printed flexible graphene paper electrode for the electrochemical determination of mercury
    Kant, Tushar
    Shrivas, Kamlesh
    Tikeshwari
    Ganesan, Vellaichamy
    RSC ADVANCES, 2023, 13 (25) : 17179 - 17187
  • [34] Fully Inkjet-Printed CuO Sensor on Flexible Polymer Substrate for Alcohol Vapours and Humidity Sensing at Room Temperature
    Krcmar, Petr
    Kuritka, Ivo
    Maslik, Jan
    Urbanek, Pavel
    Bazant, Pavel
    Machovsky, Michal
    Suly, Pavol
    Merka, Petr
    SENSORS, 2019, 19 (14)
  • [35] A Paper-Based Inkjet-Printed Graphene Sensor for Breathing-Flow Monitoring
    Lu, R.
    Haider, Mohammad R.
    Gardner, S.
    Alexander, J. I. D.
    Massoud, Y.
    IEEE SENSORS LETTERS, 2019, 3 (02)
  • [36] Inkjet-Printed Graphene Rolls Out
    不详
    CHEMICAL ENGINEERING PROGRESS, 2013, 109 (07) : 4 - 4
  • [37] WASHABLE, INKJET-PRINTED FLEXIBLE TACTILE SENSOR ON FABRIC WITH TEMPERATURE TOLERANCE
    Bae, Kyubin
    Kang, Yunsung
    Jo, Eunhwan
    Sim, Sangjun
    Yang, Woongseek
    Kim, Jongbaeg
    2022 IEEE 35TH INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS CONFERENCE (MEMS), 2022, : 79 - 82
  • [38] Fully Inkjet-printed Tunable Flexible Microfluidic Chipless RFID Sensor
    Cui, Yepu
    Su, Wenjing
    Tentzeris, Manos M.
    2019 INTERNATIONAL APPLIED COMPUTATIONAL ELECTROMAGNETICS SOCIETY SYMPOSIUM (ACES), 2019,
  • [39] Disposable, Paper-Based, Inkjet-Printed Humidity and H2S Gas Sensor for Passive Sensing Applications
    Quddious, Abdul
    Yang, Shuai
    Khan, Munawar M.
    Tahir, Farooq A.
    Shamim, Atif
    Salama, Khaled N.
    Cheema, Hammad M.
    SENSORS, 2016, 16 (12):
  • [40] Flexible ammonium ion-selective electrode based on inkjet-printed graphene solid contact
    Krivacic, Sara
    Bocek, Zeljka
    Zubak, Marko
    Kojic, Vedran
    Kassal, Petar
    TALANTA, 2024, 279