The Cao Group

Molecular Simulation & Solar Energy Conversion
2017
46.Zhao,X.;Zhang,W.*;Cao,R.*,PVP-assisted synthesis of porous CoO prisms with enhanced electrocatalytic oxygen evolution properties.J.Energy Chem.2017,26,1210-1216.  
45.Wu,Y.;Wang,L.;Chen,M.;Jin,Z.;Zhang,W.*;Cao,R.*,Preparation of cobalt-based electrodes by physical vapor deposition on various nonconductive substrates for electrocatalytic water oxidation.ChemSusChem,2017,10,4699-4703.  
44.Li,X.;Lei,H.;Guo,X.;Zhao,X.;Ding,S.;Gao,X.;Zhang,W.;Cao,R.*,Graphene-supported pyrene-modified cobalt corrole with axial triphenylphosphine for enhanced hydrogen evolution in pH 0-14 aqueous solutions.ChemSusChem,2017,10,4632-4641.  
43.Chen,F.;Wang,N.;Lei,H.;Guo,D.;Zhang,W.;Lai,W.*;Cao,R.*,Electrocatalytic water oxidation by a water-soluble copper(II) complex with a copper-bound carbonate group acting as a potential proton shuttle.Inorg.Chem.,2017,56,13368-13375.  
42.Chen,M.;Qi,J.;Guo,D.;Lei,H.;Zhang,W.*;Cao,R.*,Facile synthesis of sponge-like Ni3N/NC for electrocatalytic water oxidation.Chem.Commun.,2017,53,9566-9569.  
41.Qi,J.;Zhang,W.*;Cao,R.*,Aligned cobalt-based Co@CoOx nanostructures for efficient electrocatalytic water oxidation.Chem.Commun.,2017,53,9277-9280.  
40.Wan,S.;Qi,J.;Zhang,W.*;Cao,R.*,Hierarchical Co(OH)F superstructure built by low-dimensional substructures for electrocatalytic water oxidation.Adv.Mater.2017,29,1700286.[Highly Cited Paper]  
39.Guo,D.;Chen,F.;Zhang,W.*;Cao,R.*,Phase-transfer synthesis of α-Co(OH)2 and its conversion to CoO for electrocatalytic water oxidation.Sci.Bull.,2017,62,626-632.  
38.Sun,H.;Han,Y.;Lei,H.;Chen,M.;Cao,R.*,Cobalt corroles with phosphonic acid pendants as catalysts for oxygen and hydrogen evolution from neutral aqueous solution.Chem.Commun.,2017,53,6195-6198.  
37.Chen,M.;Qi,J.;Zhang,W.*;Cao,R.*,Electrosynthesis of NiPx nanospheres for electrocatalytic hydrogen evolution from a neutral aqueous solution.Chem.Commun.,2017,53,5507-5510.  
36.Xu,L.;Lei,H.;Zhang,Z.;Yao,Z.;Li,J.;Yu,Z.;Cao,R.*,The effect of the trans axial ligand of cobalt corroles on water oxidation activity in neutral aqueous solutions.Phys.Chem.Chem.Phys.,2017,19,9755-9761.  
35.Zhang,S.;Zhang,Z.;Cao,R.*,Two-and three-dimensional silver acetylide frameworks with high-nuclearity silver cluster building blocks assembled using a bifunctional (4-ethynylphenyl)diphenyl phosphine ligand.Inorg.Chim.Acta,2017,461,57-63.  
34.Liu,C.;Lei,H.;Zhang,Z.;Chen,F.;Cao,R.*,Oxygen reduction catalyzed by a water-soluble binuclear copper (II) complex from a neutral aqueous solution.Chem.Commun.,2017,53,3189-3192.  
33.Zhang,W.;Lai,W.;Cao,R.*,Energy-related small molecule activation reactions: oxygen reduction and hydrogen and oxygen evolution reactions catalyzed by porphyrin-and corrole-based systems.Chem.Rev.,2017,117,3717-3797.[Highly Cited Paper]  
32.Guo,D.;Qi,J.;Zhang,W.*;Cao,R.*,Surface electrochemical modification of a nickel substrate to prepare a NiFe-based electrode for water oxidation.ChemSusChem,2017,10,394-400.[Highly Cited Paper]  
31.Zhang,W.;Wu,Y.;Qi,J.;Chen,M.;Cao,R.*,A thin NiFe hydroxide film formed by stepwise electrodeposition strategy with significantly improved catalytic water oxidation efficiency.Adv.Energy Mater.,2017,7,1602547.[Highly Cited Paper]  
30.Gao,Z.;Qi,J.;Chen,M.;Zhang,W.*;Cao,R.*,An electrodeposited NiSe for electrocatalytic hydrogen and oxygen evolution reactions in alkaline solution.Electrochim.Acta,2017,224,412-418.[Highly Cited Paper]  
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