Synergetic improvement in charge carrier transport and light harvesting over ternary InVO4-g-C3N4/rGO hybrid nanocomposite for hydrogen evolution reaction

被引:55
作者
Hafeez, Hafeez Yusuf [1 ]
Lakhera, Sandeep Kumar [2 ]
ShankarC, M. V. [3 ]
Neppolian, Bernaurdshaw [1 ]
机构
[1] SRM Inst Sci & Technol, SRM Res Inst, Chennai 603203, Tamil Nadu, India
[2] SRM Inst Sci & Technol, Dept Phys & Nanotechnol, Chennai 603203, Tamil Nadu, India
[3] Yogi Vemana Univ, Dept Mat Sci & Nanotechnol, Nano Catalysis & Solar Fuels Res Lab, Kadapa 516003, Andhra Pradesh, India
关键词
H-2; production; g-C3N4; nanosheets; InVO4; nanoparticles; Ternary nanocomposites; Charge carrier separation; ENHANCED PHOTOCATALYTIC ACTIVITY; ULTRATHIN G-C3N4 NANOSHEETS; FACILE SYNTHESIS; HETEROJUNCTIONS; CONSTRUCTION; COCATALYST; GENERATION; SEPARATION; EFFICIENCY; COMPOSITE;
D O I
10.1016/j.ijhydene.2019.05.235
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
A ternary reduced graphene oxide loaded InVO4-g-C3N4 nanocomposite was prepared by the wet impregnation method. The formation of InVO4-g-C3N4 heterojunction and loading of rGO was corroborated by XRD, FTIR, UV-vis, TEM and XPS studies. Incorporation of both InVO4 and rGO in g-C3N4 substantially increased the absorption edge of the photocatalyst from 451 nm (2.75eV) of g-C3N4 to 546 nm (2.27 eV) due to the formation of heterojunction. Interestingly, among the different weight % of both InVO4 and rGO loaded g-C3N4, 3.0 wt% of rGO and 30 wt% of InVO4 loaded g-C3N4 has shown a superior hydrogen production of 7449 mu mol g(-1)h(-1), a 45 times enhancement in comparison to g-C3N4. This can be related to the synergetic boosting of charge carrier separation at InVa(4)-g-C3N4 heterojunction and transportation through rGO support as revealed by photoluminescence and photocurrent studies. Moreover, the hydrogen production rate obtained in the present binary nanocomposite was almost 8 times higher than the previously reported hydrogen production rate using the same binary InVO4-g-C3N4 nanocomposites without rGO support. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:7530 / 7540
页数:11
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