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Qi Yu

Researcher at Shaanxi University of Technology

Publications -  19
Citations -  843

Qi Yu is an academic researcher from Shaanxi University of Technology. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 8, co-authored 11 publications receiving 336 citations.

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Theoretical Understandings of Graphene-based Metal Single-Atom Catalysts: Stability and Catalytic Performance.

TL;DR: An overview of recent progress in investigations of graphene-based SACs is provided, selectively focusing on the stability of metal single-atoms anchored on different sites of graphene support and the catalytic performances of graphene theses for different chemical reactions, including thermocatalysis and electrocatalysis.
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Preparations, properties and applications of graphene in functional devices: A concise review

TL;DR: In this article, the preparation, properties and applications of graphene materials in a few selected functional devices are discussed, including graphene bulbs, graphene superconductors, graphene chips, rapid heating of graphene, drug carriers, hydrogen storage materials, and graphene battery.
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Fabrications and Applications of ZnO Nanomaterials in Flexible Functional Devices-A Review.

TL;DR: The present review focuses on the preparations, properties, and applications of zinc oxide (ZnO) nanomaterials in flexible functional devices, including sputtering, sol-gel method, atomic layer deposition, all-inkjet-printing approach, electrochemical deposition, hydrothermal method, and more.
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A systematic theoretical study on FeO x -supported single-atom catalysts: M 1 /FeO x for CO oxidation

TL;DR: In this paper, an extensive density functional theory calculation was carried out on the catalytic mechanisms of single-atom catalysts with the 3d, 4d, and 5d metals of group VIII to IB, i.e., M1/FeOx (M = Fe, Co, Ni, Cu; Ru, Rh, Pd, Ag; Os, Ir, Pt, Au), for CO oxidation.
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Graphene-supported metal single-atom catalysts: a concise review

TL;DR: Graphene-supported metal SACs have also drawn considerable attention due to the unique lattice structure and physicochemical properties of graphene, resulting in superior activity and selectivity for several chemical reactions as discussed by the authors.