TY - JOUR
T1 - A Flexible Wearable Humidity Sensor with Fast Response and High Responsivity Based on GOQDs/WS2 Heterojunctions
AU - Wang, Jiayu
AU - Ma, Hongliang
AU - Si, Fangcheng
AU - Ke, Ningfeng
AU - Wang, Gaohan
AU - Zhang, Shuailong
AU - Ding, Jie
AU - Zhang, Wendong
AU - Fan, Xuge
N1 - Publisher Copyright:
© 2025 American Chemical Society.
PY - 2025/3/14
Y1 - 2025/3/14
N2 - Humidity sensors are widely used in human health detection, human-computer interaction, motion detection, Internet of Things, and so on. In this work, we report highly sensitive and fast response flexible humidity sensors based on graphene oxide quantum dots (GOQDs)/WS2 hybrid films, which were deposited on a flexible polyimide (PI) substrate by a facile drop-coating technique. The prepared humidity sensor exhibits high responsivity (99.57%), fast response/recovery time (1.55 s/41.1 s), wide working range (11-98% relative humidity (RH)), excellent repeatability, low hysteresis, and excellent stability. The performance of the GOQDs/WS2-based humidity sensor is significantly improved compared to the pure WS2-based humidity sensor, with a 41-fold improvement in response time. Ultraviolet-visible (UV-vis) absorption spectra indicate that the formation of impurity energy levels is the major cause of band gap changes of GOQDs/WS2 nanocomposites, thereby facilitating the transfer of electrons in the semiconductor. Further, the Mott-Schottky measurement result indicates that the GOQDs/WS2 nanocomposites show a bipolar semiconductor structure, confirming the formation of P-N heterojunctions. In addition, the prepared humidity sensors were integrated with flexible printed circuit (FPC) and successfully applied for human respiration monitoring, motion monitoring, and nontouch switches, showing the great potential in multifunctional application scenarios.
AB - Humidity sensors are widely used in human health detection, human-computer interaction, motion detection, Internet of Things, and so on. In this work, we report highly sensitive and fast response flexible humidity sensors based on graphene oxide quantum dots (GOQDs)/WS2 hybrid films, which were deposited on a flexible polyimide (PI) substrate by a facile drop-coating technique. The prepared humidity sensor exhibits high responsivity (99.57%), fast response/recovery time (1.55 s/41.1 s), wide working range (11-98% relative humidity (RH)), excellent repeatability, low hysteresis, and excellent stability. The performance of the GOQDs/WS2-based humidity sensor is significantly improved compared to the pure WS2-based humidity sensor, with a 41-fold improvement in response time. Ultraviolet-visible (UV-vis) absorption spectra indicate that the formation of impurity energy levels is the major cause of band gap changes of GOQDs/WS2 nanocomposites, thereby facilitating the transfer of electrons in the semiconductor. Further, the Mott-Schottky measurement result indicates that the GOQDs/WS2 nanocomposites show a bipolar semiconductor structure, confirming the formation of P-N heterojunctions. In addition, the prepared humidity sensors were integrated with flexible printed circuit (FPC) and successfully applied for human respiration monitoring, motion monitoring, and nontouch switches, showing the great potential in multifunctional application scenarios.
KW - fast response
KW - flexible humidity sensor
KW - GOQDs/WS heterojunction
KW - high responsivity
KW - smart wearable sensors
UR - http://www.scopus.com/inward/record.url?scp=86000437328&partnerID=8YFLogxK
U2 - 10.1021/acsanm.5c00184
DO - 10.1021/acsanm.5c00184
M3 - Article
AN - SCOPUS:86000437328
SN - 2574-0970
VL - 8
SP - 5193
EP - 5206
JO - ACS Applied Nano Materials
JF - ACS Applied Nano Materials
IS - 10
ER -