Polyvinylpyridine–carbon dots composite-based novel humidity sensor

被引:0
作者
Khouloud Jlassi
Shoaib Mallick
Ahmed Ben Ali
Hafsa Mutahir
Sayma Akhter Salauddin
Zubair Ahmad
Lahcene Tennouga
Mohamed Chehimi
机构
[1] Qatar University,Center for Advanced Materials
[2] Qatar University,Qatar University Young Scientists Center (QUYSC)
[3] Qatar University,Gas Processing Center, College of Engineering
[4] Qatar University,Department of Chemical Engineering, College of Engineering
[5] Université de Tlemcen,Laboratoire d’Application des Electrolytes et des Polyélectrolytes Organiques (LAEPO), Département de Chimie
[6] Université de Paris,undefined
[7] CNRS,undefined
[8] ITODYS (UMR 7086),undefined
来源
Applied Physics A | 2023年 / 129卷
关键词
Polyvinylpyridine; Carbon dots; Humidity sensor; Sensing mechanism;
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学科分类号
摘要
This work describes the rational design of thin films based on PVP-modified carbon dots for potential resistive humidity sensing application, prepared via spin coating on ITO substrates. The modified carbon dots were manufactured from graphite waste and modified with PVP to test the synergetic effect of the two materials. The surface hydrophilicity, morphology, and sensing properties were studied. AFM has been performed to investigate the prepared films’ texture and distribution over the surface. Overall, the hydrophilicity of the prepared films increases with concentration, leading to enhanced water vapor absorption on the surface of the sensing film. As a result, the sensor’s sensitivity is improved with the increasing concentration of PVP–CDs. The electrical response of the PVP–CDs composite film sensor shows a higher sensitivity level above 80% RH sensor with an irregular response; however, the concentration of 0.5 wt%, higher sensitivity, and linear change in impedance response was noted compared to other concentrations.
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