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Wei Luo

Researcher at Donghua University

Publications -  268
Citations -  11803

Wei Luo is an academic researcher from Donghua University. The author has contributed to research in topics: Mesoporous material & Soil water. The author has an hindex of 47, co-authored 243 publications receiving 8194 citations. Previous affiliations of Wei Luo include Shaanxi University of Science and Technology & Chinese Academy of Sciences.

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Impacts of soil and water pollution on food safety and health risks in China

TL;DR: A comprehensive map of both soil and water pollution threats to food safety in China is presented and integrated policies addressing soil andWater pollution for achieving food safety are suggested to provide a holistic approach.
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Amorphous TiO2 Shells: A Vital Elastic Buffering Layer on Silicon Nanoparticles for High-Performance and Safe Lithium Storage

TL;DR: Interestingly, it is found that the amorphousTiO2 shells offer superior buffering properties compared to crystalline TiO2 layers for unprecedented cycling stability, and accelerating rate calorimetry testing reveals that the TiO1 -encapsulated Si nanoparticles are safer than conventional carbon-coated Si-based anodes.
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Sodium/Potassium-Ion Batteries: Boosting the Rate Capability and Cycle Life by Combining Morphology, Defect and Structure Engineering.

TL;DR: By rational design, N-doped 3D mesoporous carbon nanosheets (N-CNS) are successfully synthesized, which can realize unprecedented electrochemical performance for both SIBs and PIBs.
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Surface and Interface Engineering of Silicon-Based Anode Materials for Lithium-Ion Batteries

TL;DR: In this paper, the recent progress in surface and interface engineering of silicon-based anode materials such as coreshell, yolk-shell, sandwiched structures and their applications in lithium-ion batteries are reviewed.
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Heterogeneous Single‐Atom Catalysts for Electrochemical CO2 Reduction Reaction

TL;DR: The reaction mechanism, the rate-determining steps, and the key factors that control the activity and selectivity are analyzed from both experimental and theoretical studies to develop a fundamental understanding of the CO2 RR-to-CO process on SACs.