Metal-Free 2D/2D Heterojunction of Graphitic Carbon Nitride/Graphdiyne for Improving the Hole Mobility of Graphitic Carbon Nitride

被引:290
|
作者
Han, Ying-Ying [1 ]
Lu, Xiu-Li [1 ]
Tang, Shang-Feng [1 ]
Yin, Xue-Peng [1 ]
Wei, Zhen-Wei [1 ]
Lu, Tong-Bu [1 ]
机构
[1] Tianjin Univ Technol, Inst New Energy Mat & Low Carbon Technol, Sch Mat Sci & Engn, Tianjin 300384, Peoples R China
关键词
graphdiyne; graphitic carbon nitride; hole transfer; photoelectrocatalysts; water splitting; PHOTOCATALYTIC HYDROGEN-PRODUCTION; VISIBLE-LIGHT; ARTIFICIAL PHOTOSYNTHESIS; H-2; EVOLUTION; WATER; GENERATION; NANOSHEETS; SEMICONDUCTORS; GRAPHDIYNE; CATALYSTS;
D O I
10.1002/aenm.201702992
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The design and synthesis of efficient metal-free photoelectrocatalysts for water splitting are of great significance, as nonmetal elements are generally earth abundant and environment friendly. As a typical metal-free semiconductor, g-C3N4 has received much attention in the field of photocatalytic water splitting. However, the poor photoinduced hole mobility of g-C3N4 restrains its catalytic performance. Herein, for the first time, graphdiyne (GDY) is used to interact with g-C3N4 to construct a metal-free 2D/2D heterojunction of g-C3N4/GDY as an efficient photoelectrocatalyst for water splitting. The g-C3N4/GDY photocathode exhibits enhanced photocarriers separation due to excellent hole transfer nature of graphdiyne and the structure of 2D/2D heterojunction of g-C3N4/GDY, realizing a sevenfold increase in electron life time (610 mu s) compared to that of g-C3N4 (88 mu s), and a threefold increase in photocurrent density (-98 mu A cm(-2)) compared to that of g-C3N4 photocathode (-32 mu A cm(-2)) at a potential of 0 V versus normal hydrogen electrode (NHE) in neutral aqueous solution. The photoelectrocatalytic performance can be further improved by fabricating Pt@ g-C3N4/GDY, which displays an photocurrent of -133 mu A cm(-2) at a potential of 0 V versus NHE in neutral aqueous solution. This work provides a new strategy for the design of efficient metal-free photoelectrocatalysts for water splitting.
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页数:8
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