VIAF

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Leader 00000nz a2200037n 45 0
001 WKP|Q88338155 (VIAF cluster) (Authority/Source Record)
003 WKP
005 20241121000347.0
008 241121nneanz||abbn n and d
035 ‎‡a (WKP)Q88338155‏
024 ‎‡a 0000-0002-7717-9614‏ ‎‡2 orcid‏
035 ‎‡a (OCoLC)Q88338155‏
100 0 ‎‡a Qiang Li‏ ‎‡c researcher (ORCID 0000-0002-7717-9614)‏ ‎‡9 en‏
670 ‎‡a Author's Accelerated discovery of stable lead-free hybrid organic-inorganic perovskites via machine learning‏
670 ‎‡a Author's Band-edge engineering via molecule intercalation: a new strategy to improve stability of few-layer black phosphorus.‏
670 ‎‡a Author's Computation-aided Design of Single Atom Catalysts for One-pot CO2 Capture, Activation and Conversion‏
670 ‎‡a Author's Covalent Functionalization of Black Phosphorus from First-Principles‏
670 ‎‡a Author's Degenerate electron-doping in two-dimensional tungsten diselenide with a dimeric organometallic reductant‏
670 ‎‡a Author's Effect of illumination and Se vacancies on fast oxidation of ultrathin gallium selenide‏
670 ‎‡a Author's Exploitation of the Large-Area Basal Plane of MoS2 and Preparation of Bifunctional Catalysts through On-Surface Self-Assembly.‏
670 ‎‡a Author's Hybrid Cu0 and Cux + as Atomic Interfaces Promote High-Selectivity Conversion of CO2 to C2 H5 OH at Low Potential‏
670 ‎‡a Author's Metal-Free Single Atom Catalyst for N2 Fixation Driven by Visible Light‏
670 ‎‡a Author's New Mechanism for N2 Reduction: The Essential Role of Surface Hydrogenation‏
670 ‎‡a Author's Oxidation Mechanism and Protection Strategy of Ultrathin Indium Selenide: Insight from Theory.‏
670 ‎‡a Author's Passivation of Black Phosphorus via Self-Assembled Organic Monolayers by van der Waals Epitaxy.‏
670 ‎‡a Author's Perspective on theoretical methods and modeling relating to electro-catalysis processes‏
670 ‎‡a Author's Towards a Comprehensive Understanding of the Reaction Mechanisms Between Defective MoS2 and Thiol Molecules‏
670 ‎‡a Author's Unveiling chemical reactivity and oxidation of 1T-phased group VI disulfides‏
670 ‎‡a Author's Water-Catalyzed Oxidation of Few-Layer Black Phosphorous in a Dark Environment.‏
909 ‎‡a (orcid) 0000000277179614‏ ‎‡9 1‏
919 ‎‡a accelerateddiscoveryofstableleadfreehybridorganicinorganicperovskitesviamachinelearning‏ ‎‡A Accelerated discovery of stable lead-free hybrid organic-inorganic perovskites via machine learning‏ ‎‡9 1‏
919 ‎‡a bandedgeengineeringviamoleculeintercalationanewstrategytoimprovestabilityoffewlayerblackphosphorus‏ ‎‡A Band-edge engineering via molecule intercalation: a new strategy to improve stability of few-layer black phosphorus.‏ ‎‡9 1‏
919 ‎‡a computationaideddesignofsingleatomcatalystsfor1potco2captureactivationandconversion‏ ‎‡A Computation-aided Design of Single Atom Catalysts for One-pot CO2 Capture, Activation and Conversion‏ ‎‡9 1‏
919 ‎‡a covalentfunctionalizationofblackphosphorusfrom1principles‏ ‎‡A Covalent Functionalization of Black Phosphorus from First-Principles‏ ‎‡9 1‏
919 ‎‡a degenerateelectrondopingin2dimensionaltungstendiselenidewithadimericorganometallicreductant‏ ‎‡A Degenerate electron-doping in two-dimensional tungsten diselenide with a dimeric organometallic reductant‏ ‎‡9 1‏
919 ‎‡a effectofilluminationandsevacanciesonfastoxidationofultrathingalliumselenide‏ ‎‡A Effect of illumination and Se vacancies on fast oxidation of ultrathin gallium selenide‏ ‎‡9 1‏
919 ‎‡a exploitationofthelargeareabasalplaneofmos2andpreparationofbifunctionalcatalyststhroughonsurfaceselfassembly‏ ‎‡A Exploitation of the Large-Area Basal Plane of MoS2 and Preparation of Bifunctional Catalysts through On-Surface Self-Assembly.‏ ‎‡9 1‏
919 ‎‡a hybridcu0andcux+asatomicinterfacespromotehighselectivityconversionofco2toc2h55atlowpotential‏ ‎‡A Hybrid Cu0 and Cux + as Atomic Interfaces Promote High-Selectivity Conversion of CO2 to C2 H5 OH at Low Potential‏ ‎‡9 1‏
919 ‎‡a metalfreesingleatomcatalystforn2fixationdrivenbyvisiblelight‏ ‎‡A Metal-Free Single Atom Catalyst for N2 Fixation Driven by Visible Light‏ ‎‡9 1‏
919 ‎‡a newmechanismforn2reductiontheessentialroleofsurfacehydrogenation‏ ‎‡A New Mechanism for N2 Reduction: The Essential Role of Surface Hydrogenation‏ ‎‡9 1‏
919 ‎‡a oxidationmechanismandprotectionstrategyofultrathinindiumselenideinsightfromtheory‏ ‎‡A Oxidation Mechanism and Protection Strategy of Ultrathin Indium Selenide: Insight from Theory.‏ ‎‡9 1‏
919 ‎‡a passivationofblackphosphorusviaselfassembledorganicmonolayersbyvanderwaalsepitaxy‏ ‎‡A Passivation of Black Phosphorus via Self-Assembled Organic Monolayers by van der Waals Epitaxy.‏ ‎‡9 1‏
919 ‎‡a perspectiveontheoreticalmethodsandmodelingrelatingtoelectrocatalysisprocesses‏ ‎‡A Perspective on theoretical methods and modeling relating to electro-catalysis processes‏ ‎‡9 1‏
919 ‎‡a towardsacomprehensiveunderstandingofthereactionmechanismsbetweendefectivemos2andthiolmolecules‏ ‎‡A Towards a Comprehensive Understanding of the Reaction Mechanisms Between Defective MoS2 and Thiol Molecules‏ ‎‡9 1‏
919 ‎‡a unveilingchemicalreactivityandoxidationof1tphasedgroup6disulfides‏ ‎‡A Unveiling chemical reactivity and oxidation of 1T-phased group VI disulfides‏ ‎‡9 1‏
919 ‎‡a watercatalyzedoxidationoffewlayerblackphosphorousinadarkenvironment‏ ‎‡A Water-Catalyzed Oxidation of Few-Layer Black Phosphorous in a Dark Environment.‏ ‎‡9 1‏
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