Wei Liu
Dalian Institute of Chemical Physics, University of Electronic Science and Technology of China, University of Michigan, Beihang University, Sichuan University
About
Well skilled on microscopy analysis of nanomaterials with advanced electron microscopes (TEM & SEM);
Possess experience on wet chemical sysnthesis of ZnS nanostructures, such as nanobelts, quantum dots, nano-tetrapods and ZnO/ZnS heterostructures;
Hold interests on magnetic bimetallic nanoparticles, asymmetric nanostructures of II-Vi semiconductors, in-situ investigation of dynamic procedures on TEM, such as catalysis, atoms thermal migration and phase transition, electric and optic exitations.
Employment
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Dalian Institute of Chemical Physics Professor2020 - Present
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Dalian Institute of Chemical Physics Associate Professor2017 - 2020
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University of Electronic Science and Technology of China Associate Professor2013 - 2017
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Sichuan University Lecturer2012 - 2013
Education
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University of Michigan2015 - 2016
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Beihang University Ph.D2007 - 2012
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Beihang University Bachelor2003 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (154)
- Operando Electrochemical Phase Engineering Overcomes Activity–Stability Trade‐Off in Perovskite Electrocatalysts Save
- Operando Electrochemical Phase Engineering Overcomes Activity–Stability Trade‐Off in Perovskite Electrocatalysts Save
- Dual‐Site Substitution With Single Te Atoms in MoS2 Boosting Hydrogen Evolution Save
- Dual‐Site Substitution With Single Te Atoms in MoS2 Boosting Hydrogen Evolution Save
- Imaging interface-controlled bulk oxygen spillover Save
- An Atomic-to-Macroscale Assembled Ni/MoO2 Electrode for High-Efficiency and Long-Life Hydrogen Production Save
- Room-Temperature Conversion of Methane with Ozone over MOR Lattice-Confined Pd Sites Save
- Spin Catalysis: Concept, Characterizations, and Advances in 2D Catalytic Materials Save
- Unravelling the role of redox active sites in nitrogen doped cerium oxide for associative ammonia decomposition Save
- Boosting the High-Temperature Methanol Selectivity in CO2 Hydrogenation by Stabilizing the Formate Intermediates at ZnO/MnO-MnCO3 Interfacial Sites Save