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Integrated Photo-Responsive Batteries for Solar Energy Harnessing: Recent Advances, Challenges, and Opportunities.
ChemPlusChem ( IF 3.0 ) Pub Date : 2020-01-16 , DOI: 10.1002/cplu.201900608
Zhengsong Fang 1 , Xuanhe Hu 1 , Dingshan Yu 1
Affiliation  

Photo-responsive batteries that enable the effective combination of solar harvesting and energy conversion/storage functionalities render a potential solution to achieve the large-scale utilization of unlimited and cost-effective solar energy and alleviate the limits of conventional energy storage devices. The internal integration of photo-responsive electrodes into rechargeable batteries with the simplest two-electrode configuration is regarded as a reliable and appealing strategy for highly-efficient and low-cost utilization of solar energy by simplifying the device architecture and improving the energy efficiency. This progress report provides a brief review on photo-responsive batteries with integrated two-electrode configuration that can achieve solar energy conversion/storage in one single device. The basic device architecture, operating principles and practical performance of various photo-responsive systems based on solar energy harvesting in various batteries including Li ion batteries, Li-S batteries, Li-I batteries, dual-liquid redox batteries, Li-O2 batteries, non-Li anode-O2 /air batteries are summarized and discussed. Finally, the future opportunities and challenges regarding the two-electrode photo-responsive batteries are proposed.

中文翻译:

用于太阳能利用的集成式光敏电池:最新进展,挑战和机遇。

能够将太阳能收集与能量转换/存储功能有效结合的光敏电池为实现无限利用和具有成本效益的太阳能的大规模利用并减轻传统储能设备的局限性提供了一种潜在的解决方案。通过简化设备架构和提高能源效率,将光响应电极内部集成到具有最简单的两电极配置的可再充电电池中被视为一种可靠且吸引人的策略,可高效,低成本地利用太阳能。这份进度报告简要介绍了具有集成式两电极配置的光敏电池,该电池可在单个设备中实现太阳能转换/存储。基本的设备架构,基于各种能量收集太阳能的各种光响应系统的工作原理和实际性能,包括锂离子电池,Li-S电池,Li-I电池,双液氧化还原电池,Li-O2电池,非Li阳极-氧气/空气电池进行了总结和讨论。最后,提出了有关两电极光敏电池的未来机遇和挑战。
更新日期:2020-01-16
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