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通过太阳能到燃料技术推动能源可持续性:从材料到器件及系统

Advancing Energy Sustainability Through Solar-to-Fuel Technologies: From Materials to Devices and Systems.

作者信息

Li Xintong, Yu Zexin, Zhang Chunlei, Li Bo, Wu Xin, Liu Yizhe, Zhu Zonglong

机构信息

Department of Chemistry, City University of Hong Kong, Kowloon, 999077, Hong Kong.

Shenzhen Research Institute, City University of Hong Kong, Shenzhen, 518057, China.

出版信息

Small Methods. 2024 Nov;8(11):e2400683. doi: 10.1002/smtd.202400683. Epub 2024 Jul 23.

Abstract

To achieve carbon neutrality and sustainable development, innovative solar-to-fuel systems have been designed through the integration of solar energy harvesting and electrochemical devices. Over the last decade, there have been notable advancements in enhancing the efficiency and durability of these solar-to-fuel systems. Despite the advancements, there remains significant potential for further improvements in the performance of systems. Enhancements can be achieved by optimizing electrochemical catalysts, advancing the manufacturing technologies of photovoltaics and electrochemical cells, and refining the overall design of these systems. In the realm of catalyst optimization, the effectiveness of materials can be significantly improved through active site engineering and strategic use of functional groups. Similarly, the performance of electrochemical devices can be enhanced by incorporating specific additives into electrolytes and optimizing gas diffusion electrodes. Improvements in solar harvesting devices are achievable through efficient passivant and self-assembled monolayers, which enhance the overall quality and efficiency of these systems. Additionally, optimizing the energy conversion efficiency involves the strategic use of DC converters, photoelectrodes, and redox media. This review aims to provide a comprehensive overview of the advancements in solar-powered electrochemical energy conversion systems, laying a solid foundation for future research and development in the field of energy sustainability.

摘要

为实现碳中和与可持续发展,通过整合太阳能收集与电化学装置,设计出了创新的太阳能制燃料系统。在过去十年中,这些太阳能制燃料系统在提高效率和耐久性方面取得了显著进展。尽管取得了这些进展,但这些系统的性能仍有很大的提升潜力。可以通过优化电化学催化剂、推进光伏和电化学电池的制造技术以及完善这些系统的整体设计来实现性能提升。在催化剂优化领域,通过活性位点工程和官能团的策略性使用,可以显著提高材料的有效性。同样,通过在电解质中加入特定添加剂并优化气体扩散电极,可以提高电化学装置的性能。通过高效钝化剂和自组装单分子层可以实现太阳能收集装置的改进,从而提高这些系统的整体质量和效率。此外,优化能量转换效率涉及直流转换器、光电极和氧化还原介质的策略性使用。本综述旨在全面概述太阳能驱动的电化学能量转换系统的进展,为能源可持续性领域的未来研发奠定坚实基础。

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