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用于电化学和光催化制氢的金属氮化物基纳米结构。

Metal nitride-based nanostructures for electrochemical and photocatalytic hydrogen production.

作者信息

Gujral Harpreet Singh, Singh Gurwinder, Baskar Arun V, Guan Xinwei, Geng Xun, Kotkondawar Abhay V, Rayalu Sadhana, Kumar Prashant, Karakoti Ajay, Vinu Ajayan

机构信息

Global Innovative Centre for Advanced Nanomaterials (GICAN), College of Engineering, Science and Environment (CESE), School of Engineering, The University of Newcastle, University Drive, Callaghan, 2308, Australia.

Environmental Materials Division, CSIR-National Environmental Engineering Research Institute, Nehru Marg, Nagpur, 440020, India.

出版信息

Sci Technol Adv Mater. 2022 Mar 14;23(1):76-119. doi: 10.1080/14686996.2022.2029686. eCollection 2022.

Abstract

The over-dependence on fossil fuels is one of the critical issues to be addressed for combating greenhouse gas emissions. Hydrogen, one of the promising alternatives to fossil fuels, is renewable, carbon-free, and non-polluting gas. The complete utilization of hydrogen in every sector ranging from small to large scale could hugely benefit in mitigating climate change. One of the key aspects of the hydrogen sector is its production via cost-effective and safe ways. Electrolysis and photocatalysis are well-known processes for hydrogen production and their efficiency relies on electrocatalysts, which are generally noble metals. The usage of noble metals as catalysts makes these processes costly and their scarcity is also a limiting factor. Metal nitrides and their porous counterparts have drawn considerable attention from researchers due to their good promise for hydrogen production. Their properties such as active metal centres, nitrogen functionalities, and porous features such as surface area, pore-volume, and tunable pore size could play an important role in electrochemical and photocatalytic hydrogen production. This review focuses on the recent developments in metal nitrides from their synthesis methods point of view. Much attention is given to the emergence of new synthesis techniques, methods, and processes of synthesizing the metal nitride nanostructures. The applications of electrochemical and photocatalytic hydrogen production are summarized. Overall, this review will provide useful information to researchers working in the field of metal nitrides and their application for hydrogen production.

摘要

过度依赖化石燃料是应对温室气体排放需要解决的关键问题之一。氢气作为化石燃料有前景的替代物之一,是可再生、无碳且无污染的气体。在从小规模到大规模的各个领域中充分利用氢气,对于缓解气候变化会有极大益处。氢气领域的一个关键方面是通过经济高效且安全的方式进行生产。电解和光催化是众所周知的制氢过程,它们的效率依赖于电催化剂,而电催化剂通常是贵金属。使用贵金属作为催化剂使得这些过程成本高昂,并且其稀缺性也是一个限制因素。金属氮化物及其多孔对应物因其在制氢方面的良好前景而受到研究人员的广泛关注。它们的性质,如活性金属中心、氮官能团,以及诸如表面积、孔体积和可调节孔径等多孔特征,在电化学和光催化制氢中可能发挥重要作用。本综述从合成方法的角度聚焦于金属氮化物的最新进展。重点关注合成金属氮化物纳米结构的新合成技术、方法和工艺的出现。总结了电化学和光催化制氢的应用。总体而言,本综述将为从事金属氮化物领域及其制氢应用研究的人员提供有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f08c/8928826/8b32be9c2ddf/TSTA_A_2029686_UF0001_OC.jpg

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