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[41]Investigating the Active Sites in Molybdenum Anchored Nitrogen-Doped Carbon for Alkaline Oxygen Evolution Reaction.J. Colloid. Inter. Sci., 609, 617-626, 2022.
[42]Boosting Hydrogen and Oxygen Evolution of Porous CoP Nanosheet Arrays through Electronic Modulating with Oxygen-Anion-Incorporation
[43]The In-situ Growth of Ru Modified CoP Nanoflakes on Carbon Clothes as Efficient Electrocatalysts for HER
[44]Ultrafast interfacial charge evolution of the Type-II cadmium Sulfide/Molybdenum disulfide heterostructure for photocatalytic hydrogen production
[45]Microbial synthesis of efficient palladium electrocatalyst with high loadings for oxygen reduction reaction in acidic medium
[46]Controlled preparation of hollow Zn0.3Cd0.7S nanospheres modified by NiS1.97 nanosheets for superior photocatalytic hydrogen production
[47]Ultralow Ru-incorporated MoS2 nanosheet arrays for efficient electrocatalytic hydrogen evolution
[48]Abundant hydroxyl groups decorated on nitrogen vacancy-embedded g-C3N4 with efficient photocatalytic hydrogen evolution performance
[49]Selective phosphidation and reduction strategy to construct heterostructured porous nanorod of CoP coated on Mn3O4 as a bifunctional electrocatalyst for overall water splitting
[50]N-Fe-Cu Co-doped carbon materials for efficient electrocatalytic water splitting
[51]A novel metal-organic framework intermediated synthesis of heterogeneous CoS2/CoS porous nanosheets for enhanced oxygen evolution reaction
[52]Ion-biosorption induced core-shell Fe2P@carbon nanoparticles decorated on N, P Co-doped carbon materials for the oxygen evolution reaction
[53]Insight into the amorphous Nickel-Iron (Oxy)hydroxide catalyst for efficient oxygen evolution reaction
[54]In situ synthesis of cubic ptpd bimetallic co-catalyst on C3N4 nanosheets for photocatalytic hydrogen generation
[55]One-step chemical bath Co-precipitation method to prepare high hydrogen-producing active ZnxCd1-xS solid solution with adjustable band structure
[56]Interfaces of graphitic carbon nitride-based composite photocatalysts
[57]Achieving electronic structure reconfiguration in metallic carbides for robust electrochemical water splitting
[58]Interface engineering in CeO2 (111) facets decorated with CdSe quantum dots for photocatalytic hydrogen evolution
[59]Prussian blue analogue-derived mn-fe oxide nanocubes with controllable crystal structure and crystallinity as highly efficient oer electrocatalysts
[60]Oxygen-defects modified amorphous Ta2O5 nanoparticles for solar driven hydrogen
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Jun Pan
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Email:jun.pan@csu.edu.cn
Fax:+860731-88836646
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