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- W4313596265 abstract "Abstract Photocatalytic water splitting to obtain hydrogen energy can transform low‐density solar to high density, new and clean energy in a clean way, which is one of the ideal ways to solve the energy crisis and environmental pollution. In this paper, The Co x P/hollow porous C 3 N 4 composite photocatalytic material was synthesized by simple methods. The photocatalytic hydrogen production rate of Co x P/hollow porous C 3 N 4 reaches 1602 μmol g −1 h −1 , which is 151 times of that of pure C 3 N 4 . The reasons for the high photocatalytic H 2 evolution activity of Co x P/hollow porous C 3 N 4 could be summarized as follows: (1) the hollow and porous structure of C 3 N 4 shows higher light capture efficiency, larger specific surface area and more surface active sites. (2) metalloid Co x P loaded forms the Schottky contact with C 3 N 4 , which improves the photogenerated charges separation efficiency of C 3 N 4 , prolongs the photogenerated charges lifetime and improves the photocatalytic H 2 evolution activity of C 3 N 4 . (3) The higher conductivity of metalloid Co x P and the lower overpotential of hydrogen production are other reasons for the higher activity of photocatalytic hydrogen production of Co x P/hollow porous C 3 N 4 . This work provides an important role for the design of efficient, stable, and efficient construction of photocatalysts for solar energy conversion." @default.
- W4313596265 created "2023-01-06" @default.
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- W4313596265 date "2023-01-04" @default.
- W4313596265 modified "2023-09-26" @default.
- W4313596265 title "Co <sub>x</sub> P/Hollow Porous C <sub>3</sub> N <sub>4</sub> as Highly Efficient Schottky Contact Photocatalyst for H <sub>2</sub> Evolution from Water Splitting" @default.
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- W4313596265 doi "https://doi.org/10.1002/ejic.202200609" @default.
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