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An organic-halide perovskite-based photo-assisted Li-ion battery for photoelectrochemical storage

机译:一个有机卤perovskite-based photo-assisted锂电池进行光电化学存储

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Merging solar energy conversion and storage into a single device would improve the utilization of solar energy. Within such a device, the photoelectrochemical material is crucially important. Herein, we design a hybrid perovskite (DAPbI) that exhibits the favorable properties of fast charge transfer and C=O redox sites for steady and reversible Li+ de/intercalation, and it can be used as a bifunctional cathode for an efficient photoinduced lithium-ion battery (LIB). The enhanced charge carrier lifetime of DAPbI (tau(CS)/(CR) = 452.1/3905 ps, compared to the organic cation DAAQ where tau(CS)/(CR) = 335.7/1291 ps) for solar harvesting and conversion and its abundant reversible redox activity for energy storage lay the foundations for efficient photoelectrochemical energy conversion and storage. Using DAPbI as a cathode, an integrated photo-assisted LIB is realized, with a 0.2 V reduction in charge voltage, a 0.1 V increase in discharge voltage, enhancements of 7.4% in roundtrip efficiency and 0.5% in photoelectrochemical energy storage efficiency, and an 11.3% reduction in input power and an 18% increase in output power. This work provides a direct and sustainable strategy to utilize solar energy through electrochemical energy storage, which may support prosperous developments in this domain.
机译:合并太阳能转换和存储到一个单一设备的利用率将改善太阳能。光电化学材料是至关重要的重要的。(DAPbI)展示的良好的性能快速的电荷转移和C = O氧化还原的场所稳定的和可逆的李+ de /夹层,它可以用作双官能的阴极高效的光诱导的锂离子电池(自由)。增强的电荷载体DAPbI的一生(τ(CS) / (CR) = 452.1/3905 ps,相比有机阳离子DAAQτ(CS) / (CR) =335.7/1291为太阳能收集和ps)转换和其丰富的可逆氧化还原活动对能源存储奠定基础高效的光电化学能源转换和存储。一个集成的实现photo-assisted自由,负责降低0.2 V电压,0.1 V放电电压的增加,增强的在往返效率为7.4%和0.5%光电化学储能效率,和输入功率减少11.3%和18%输出功率的增加。直接利用太阳能和可持续战略通过电化学能量储存能量,这可能支持繁荣发展域。

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