TY - JOUR
T1 - Impact of Size on Humidity Sensing Property of Copper Oxide Nanoparticles
AU - Gu, Yang
AU - Jiang, Huina
AU - Ye, Zi
AU - Sun, Ning
AU - Kuang, Xuliang
AU - Liu, Weijing
AU - Li, Gaofang
AU - Song, Xiaojun
AU - Zhang, Lei
AU - Bai, Wei
AU - Tang, Xiaodong
N1 - Publisher Copyright:
© 2019, The Korean Institute of Metals and Materials.
PY - 2020/1/1
Y1 - 2020/1/1
N2 - Abstract: Three sizes of CuO nanosheets were synthesized by hydrothermal method. The structure and morphology of CuO nanosheets were characterized by X-ray diffraction and scanning electron microscopy. Dielectrophoresis nano-manipulation technique was employed to arrange the materials on pre-designed Ti/Au electrodes to fabricate the three humidity sensors, and the sensing properties were then tested. The experimental results show that the sensitivity greatly increases with the decreasing size of CuO nanosheets, the sensitivity of sensor a, b, c are 369%, 3278%, 22,611% in 97.3% RH, respectively. The smaller sized CuO nanomaterials have better response characteristic, the response time of sensor a, b, c under 11.3–97.3% RH are 53 s, 49 s, 32 s, respectively. And correspondingly, hysteresis properties and the repeatability are also a little influenced. In addition, based on complex impedance spectroscopy and multilayer adsorption theory, the impact of size on humidity sensing property was discussed. The results indicated the feasibility to obtain higher performance of humidity sensor, especially the higher sensitivity, via employment the smaller size sensing nanomaterials. Graphic Abstract: [Figure not available: see fulltext.]
AB - Abstract: Three sizes of CuO nanosheets were synthesized by hydrothermal method. The structure and morphology of CuO nanosheets were characterized by X-ray diffraction and scanning electron microscopy. Dielectrophoresis nano-manipulation technique was employed to arrange the materials on pre-designed Ti/Au electrodes to fabricate the three humidity sensors, and the sensing properties were then tested. The experimental results show that the sensitivity greatly increases with the decreasing size of CuO nanosheets, the sensitivity of sensor a, b, c are 369%, 3278%, 22,611% in 97.3% RH, respectively. The smaller sized CuO nanomaterials have better response characteristic, the response time of sensor a, b, c under 11.3–97.3% RH are 53 s, 49 s, 32 s, respectively. And correspondingly, hysteresis properties and the repeatability are also a little influenced. In addition, based on complex impedance spectroscopy and multilayer adsorption theory, the impact of size on humidity sensing property was discussed. The results indicated the feasibility to obtain higher performance of humidity sensor, especially the higher sensitivity, via employment the smaller size sensing nanomaterials. Graphic Abstract: [Figure not available: see fulltext.]
KW - Complex impedance spectroscopy
KW - CuO nanosheets
KW - Dielectrophoresis
KW - Humidity sensor
KW - Multilayer adsorption theory
UR - https://www.scopus.com/pages/publications/85075253361
U2 - 10.1007/s13391-019-00181-4
DO - 10.1007/s13391-019-00181-4
M3 - 文章
AN - SCOPUS:85075253361
SN - 1738-8090
VL - 16
SP - 61
EP - 71
JO - Electronic Materials Letters
JF - Electronic Materials Letters
IS - 1
ER -