Highly sensitive humidity sensor based on high surface area mesoporous LaFeO3 prepared by a nanocasting route
Jing Zhao(Jilin University), Yu Du(Shenzhen University), Xishuang Liang(Jilin University), Xiaowei Li(Jilin University), Tong Zhang(Jilin University), Geyu Lu(Jilin University), Fengmin Liu(Jilin University), Lu You(Jilin University), Yinping Liu(Jilin University)
Cited by 180
Related Papers
A perfluorinated covalent triazine-based framework for highly selective and water–tolerant CO2 capture
|Energy & Environmental Science|2013|511
SnO2 nanoparticles-reduced graphene oxide nanocomposites for NO2 sensing at low operating temperature
|Sensors and Actuators B Chemical|2013|489
An overview: Facet-dependent metal oxide semiconductor gas sensors
|Sensors and Actuators B Chemical|2018|413
Enhancing NO2 gas sensing performances at room temperature based on reduced graphene oxide-ZnO nanoparticles hybrids
|Sensors and Actuators B Chemical|2014|365