Z
Zhi-Jian Zhao
Researcher at Tianjin University
Publications - 148
Citations - 10259
Zhi-Jian Zhao is an academic researcher from Tianjin University. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 45, co-authored 111 publications receiving 6253 citations. Previous affiliations of Zhi-Jian Zhao include SLAC National Accelerator Laboratory & Stanford University.
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Nanostructured Materials for Heterogeneous Electrocatalytic CO2 Reduction and their Related Reaction Mechanisms
TL;DR: Recent progress on the design and synthesis of solid-state catalysts for the electrochemical reduction of CO2 is described, followed by the general parameters for CO2 electroreduction and a summary of the reaction apparatus.
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Sub-10 nm rutile titanium dioxide nanoparticles for efficient visible-light-driven photocatalytic hydrogen production
TL;DR: The design of sub-10 nm rutile titanium dioxide nanoparticles, with an increased amount of surface/sub-surface defects to overcome the negative effects from bulk defects to enhance, rather than initiate, the visible-light-driven water splitting.
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Exceptional size-dependent activity enhancement in the electroreduction of CO2 over Au nanoparticles.
Hemma Mistry,Rulle Reske,Zhenhua Zeng,Zhi-Jian Zhao,Jeffrey Greeley,Peter Strasser,Beatriz Roldan Cuenya +6 more
TL;DR: It is shown that the H2/CO product ratio can be specifically tailored for different industrial processes by tuning the size of the catalyst particles, which favor the evolution of H2 over CO2 reduction to CO.
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Breaking the scaling relationship via thermally stable Pt/Cu single atom alloys for catalytic dehydrogenation.
Guodong Sun,Zhi-Jian Zhao,Rentao Mu,Shenjun Zha,Lulu Li,Sai Chen,Ketao Zang,Jun Luo,Zhenglong Li,Stephen C. Purdy,A. Jeremy Kropf,Jeffrey T. Miller,Liang Zeng,Jinlong Gong +13 more
TL;DR: An approach to break the scaling relationship for propane dehydrogenation by assembling single atom alloys (SAAs) to achieve simultaneous enhancement of propylene selectivity and propane conversion.
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Dry reforming of methane over Ni/La2O3 nanorod catalysts with stabilized Ni nanoparticles
TL;DR: In this paper, a Ni/La2O3 catalyst using La2O2CO3 nanorod as a support precursor was proposed for dry reforming of methane (DRM).