不同尺寸硫化钴(Co9S8)基材料:性质、制备及其在光电催化和储能中的应用

Photochem Pub Date : 2023-01-12 DOI:10.3390/photochem3010002
Chuantao Wang, X. Pang, Guanghui Wang, Lou-jun Gao, F. Fu
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引用次数: 0

摘要

过渡金属硫化物由于其优异的性能和独特的结构,在开发高效稳定的光电催化剂方面发挥着重要作用。近年来,它们的潜在应用已从光电催化扩展到储能,尤其是作为电化学储能关键部件的材料。作为一种典型的多功能金属硫化物催化剂,Co9S8具有较高的导电性、较好的稳定性、合适的能带结构、较高的性能和广泛的应用前景。大量研究表明,与纯Co9S8相比,战略性改性的Co9S8-基材料在各种应用中具有更大的优势。因此,本综述将评估Co9S8基材料的物理化学性质和不同尺寸材料的制备,并描述不同结构对材料光电化学能的影响。此外,还将重点介绍氢光催化、电催化水分解和各种电化学储能材料的研究进展。最后,讨论了Co9S8基材料面临的挑战及其未来应用的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cobalt Sulfide (Co9S8)-Based Materials with Different Dimensions: Properties, Preparation and Applications in Photo/Electric Catalysis and Energy Storage
Due to their excellent properties and unique structures, transition metal sulfides play an important role in the development of efficient and stable photoelectric catalysts. In recent years, their potential applications have expanded from photoelectric catalysis to energy storage, especially as materials for key components of electrochemical energy storage. As a typical multifunctional metal sulfide catalyst, Co9S8 is highly attractive due to its high conductivity, better stability, suitable band structure, enhanced performance and wide applications. A large number of studies have shown that strategically modified Co9S8-based materials have greater advantages in various applications compared with pure Co9S8. Therefore, this review will evaluate the physicochemical properties and the preparation of different dimensions of Co9S8-based materials, and the influence of different structures on the photoelectrochemical energy of materials will be described. In addition, the research progress regarding the evolution of hydrogen photocatalytic, electrocatalytic water splitting and various electrochemical energy storage materials will be emphasized. Finally, the challenges faced by Co9S8-based materials and the research directions for their future applications will be discussed.
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