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太阳能驱动的可持续性:用于绿色能源生产技术的III-V族半导体

Solar-Driven Sustainability: III-V Semiconductor for Green Energy Production Technologies.

作者信息

Chandran Bagavath, Oh Jeong-Kyun, Lee Sang-Wook, Um Dae-Young, Kim Sung-Un, Veeramuthu Vignesh, Park Jin-Seo, Han Shuo, Lee Cheul-Ro, Ra Yong-Ho

机构信息

Division of Advanced Materials Engineering, Engineering College, Research Center for Advanced Materials Development (RCAMD), Jeonbuk National University, Jeonju, 54896, Republic of Korea.

出版信息

Nanomicro Lett. 2024 Jul 11;16(1):244. doi: 10.1007/s40820-024-01412-6.

Abstract

Long-term societal prosperity depends on addressing the world's energy and environmental problems, and photocatalysis has emerged as a viable remedy. Improving the efficiency of photocatalytic processes is fundamentally achieved by optimizing the effective utilization of solar energy and enhancing the efficient separation of photogenerated charges. It has been demonstrated that the fabrication of III-V semiconductor-based photocatalysts is effective in increasing solar light absorption, long-term stability, large-scale production and promoting charge transfer. This focused review explores on the current developments in III-V semiconductor materials for solar-powered photocatalytic systems. The review explores on various subjects, including the advancement of III-V semiconductors, photocatalytic mechanisms, and their uses in H conversion, CO reduction, environmental remediation, and photocatalytic oxidation and reduction reactions. In order to design heterostructures, the review delves into basic concepts including solar light absorption and effective charge separation. It also highlights significant advancements in green energy systems for water splitting, emphasizing the significance of establishing eco-friendly systems for CO reduction and hydrogen production. The main purpose is to produce hydrogen through sustainable and ecologically friendly energy conversion. The review intends to foster the development of greener and more sustainable energy source by encouraging researchers and developers to focus on practical applications and advancements in solar-powered photocatalysis.

摘要

长期的社会繁荣依赖于解决全球能源和环境问题,光催化已成为一种可行的解决办法。从根本上说,提高光催化过程的效率是通过优化太阳能的有效利用和增强光生电荷的有效分离来实现的。已经证明,制备基于III-V族半导体的光催化剂对于增加太阳光吸收、长期稳定性、大规模生产以及促进电荷转移是有效的。这篇重点综述探讨了用于太阳能光催化系统的III-V族半导体材料的当前发展情况。该综述探讨了多个主题,包括III-V族半导体的进展、光催化机理及其在H转化、CO还原、环境修复以及光催化氧化和还原反应中的应用。为了设计异质结构,该综述深入研究了包括太阳光吸收和有效电荷分离在内的基本概念。它还强调了用于水分解的绿色能源系统的重大进展,强调了建立用于CO还原和制氢的生态友好系统的重要性。主要目的是通过可持续且生态友好的能量转换来制氢。该综述旨在通过鼓励研究人员和开发人员关注太阳能光催化的实际应用和进展,促进更绿色、更可持续能源的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9543/11239647/742e3152af32/40820_2024_1412_Fig1_HTML.jpg

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