4.6 Review

Photo-rechargeable batteries and supercapacitors: Critical roles of carbon-based functional materials

期刊

CARBON ENERGY
卷 3, 期 2, 页码 225-252

出版社

WILEY
DOI: 10.1002/cey2.105

关键词

carbon-based materials; electrochemical energy storage; integrated devices; photoelectric conversion; solar energy

资金

  1. Discovery Early Career Researcher Award [DE170100871]
  2. Innovative Research in the University of Tianjin [TD13-5077]
  3. Australian Research Council (ARC) [DP200100365]
  4. Developed and Applied Funding of Tianjin Normal University [135202XK1702]
  5. National Natural Science Foundation of China [21905202, 51072130, 51502045]

向作者/读者索取更多资源

Solar energy, as a clean and renewable energy source, faces challenges in aligning with actual energy demand due to its fluctuating nature. The development of integrated devices for direct solar-to-electrochemical energy conversion and storage is crucial, with carbon and carbon-based functional materials playing a pivotal role. This review highlights the importance of carbon-based materials in high-performance integrated devices for solar electricity energy conversion and storage.
As a clean and renewable energy source, solar energy is a competitive alternative to replace conventional fossil fuels. Nevertheless, its serious fluctuating nature usually leads to a poor alignment with the actual energy demand. To solve this problem, the direct solar-to-electrochemical energy conversion and storage have been regarded as a feasible strategy. In this context, the development of high-performance integrated devices based on solar energy conversion parts (i.e., solar cells or photoelectrodes) and electrochemical energy storage units (i.e., rechargeable batteries or supercapacitors [SCs]) has become increasingly necessary and urgent, in which carbon and carbon-based functional materials play a fundamental role in determining their energy conversion/storage performances. Herein, we summarize the latest progress on these integrated devices for solar electricity energy conversion and storage, with special emphasis on the critical role of carbon-based functional materials. First, principles of integrated devices are introduced, especially roles of carbon-based materials in these hybrid energy devices. Then, two major types of important integrated devices, including photovoltaic and photoelectrochemical-rechargeable batteries or SCs, are discussed in detail. Finally, key challenges and opportunities in the future development are also discussed. By this review, we hope to pave an avenue toward the development of stable and efficient devices for solar energy conversion and storage.

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