Bismuth-Based Multi-Component Heterostructured Nanocatalysts for Hydrogen Generation

被引:16
作者
Shaheen, Saman [1 ]
Sadiq, Iqra [1 ]
Ali, Syed Asim [1 ]
Ahmad, Tokeer [1 ]
机构
[1] Jamia Millia Islamia, Dept Chem, Nanochem Lab, New Delhi 110025, India
关键词
nanocatalysis; heterojunctions; water splitting; hydrogen energy; sustainable energy; PHOTOELECTROCHEMICAL WATER OXIDATION; ENHANCED PHOTOCATALYTIC ACTIVITY; P-N HETEROJUNCTIONS; STATE Z-SCHEME; POLLUTANT DEGRADATION; COMPOSITE NANOFIBERS; ASSISTED SYNTHESIS; FACILE SYNTHESIS; BI2S3; NANORODS; CLIMATE-CHANGE;
D O I
10.3390/catal13020295
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
Developing a unique catalytic system with enhanced activity is the topmost priority in the science of H-2 energy to reduce costs in large-scale applications, such as automobiles and domestic sectors. Researchers are striving to design an effective catalytic system capable of significantly accelerating H-2 production efficiency through green pathways, such as photochemical, electrochemical, and photoelectrochemical routes. Bi-based nanocatalysts are relatively cost-effective and environmentally benign materials which possess advanced optoelectronic properties. However, these nanocatalysts suffer back recombination reactions during photochemical and photoelectrochemical operations which impede their catalytic efficiency. However, heterojunction formation allows the separation of electron-hole pairs to avoid recombination via interfacial charge transfer. Thus, synergetic effects between the Bi-based heterostructured nanocatalysts largely improves the course of H-2 generation. Here, we propose the systematic review of Bi-based heterostructured nanocatalysts, highlighting an in-depth discussion of various exceptional heterostructures, such as TiO2/BiWO6, BiWO6/Bi2S3, Bi2WO6/BiVO4, Bi2O3/Bi2WO6, ZnIn2S4/BiVO4, Bi2O3/Bi2MoO6, etc. The reviewed heterostructures exhibit excellent H-2 evolution efficiency, ascribed to their higher stability, more exposed active sites, controlled morphology, and remarkable band-gap tunability. We adopted a slightly different approach for reviewing Bi-based heterostructures, compiling them according to their applicability in H-2 energy and discussing challenges, prospects, and guidance to develop better and more efficient nanocatalytic systems.
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页数:31
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