Significantly Improved Electrorheological Performance of MIL-125@PPy-Based Electrorheological Fluid
Muhammad Bilal Khan(Dow University of Health Sciences), Yao Li(Naval University of Engineering), Jiupeng Zhao(Harbin Institute of Technology), Tong Zhang(École Polytechnique Fédérale de Lausanne), Xinchun Liu(Harbin Institute of Technology), Ke Zhang(Harbin Institute of Technology), Sai Chen(Harbin Institute of Technology), Zaheer Abbas(Harbin Institute of Technology), Hassan Murtza(Harbin Institute of Technology), Yinyong Sun(Harbin Institute of Technology)
Cited by 4
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