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Xiao Luo

Researcher at University of Science and Technology of China

Publications -  9
Citations -  470

Xiao Luo is an academic researcher from University of Science and Technology of China. The author has contributed to research in topics: Photocatalysis & Surface modification. The author has an hindex of 5, co-authored 6 publications receiving 199 citations.

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Enhanced Superoxide Generation on Defective Surfaces for Selective Photooxidation

TL;DR: Benefiting from the enhanced charge separation and transfer processes, the In2S3 nanosheets with S vacancies could simultaneously activate O2 into superoxide radicals via electron transfer under visible-light irradiation to display outstanding activity for the selective oxidation of alcohols to aldehydes with high conversion and selectivity.
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High Phase Purity of Large-Sized 1T'-MoS2 Monolayers with 2D Superconductivity.

TL;DR: Direct chemical exfoliation of millimeter-sized 1T' crystal is introduced to successfully produce a high-yield of 1T'-MoS2 monolayers with over 97% phase purity and unprecedentedly large size up to tens of micrometers, which opens up an ideal approach to explore the properties of 2D metastable polymorphic materials.
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Sulfur stabilizing metal nanoclusters on carbon at high temperatures.

TL;DR: In this paper, the authors show that when doped in a carbon matrix, sulfur can enhance the adhesion strength and eventually suppress the metal sintering, which improves the performance of propane dehydrogenation by strong chemical/electronic interactions.
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Structurally distorted wolframite-type CoxFe1-xWO4 solid solution for enhanced oxygen evolution reaction

TL;DR: In this article, the intrinsic relationships among local structural distortion, spin configuration and oxygen evolution reaction (OER) activity of the sample are systematically studied by taking the solid solution of transition metal tungstates (CoxFe1-xWO4) with tunable degrees of local structural distortions as a platform.
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Protonation-Assisted Exfoliation of N-Containing 2D Conjugated Polymers.

TL;DR: This study unveils an important protocol toward producing ultrathin 2D N-containing conjugated polymer nanosheets for future solar energy conversion through protonation-assisted exfoliation of polymers into the liquid phase.