Simultaneously harvesting, converting and storing solar energy in a single device represents an ideal technological approach for the next generation of power sources. Herein, we propose a device consisting of an integrated carbon-based perovskite solar cell module capable of harvesting solar energy (and converting it into electricity) and a rechargeable aqueous zinc metal cell. The electrochemical energy storage cell utilizes heterostructural Co(2)P-CoP-NiCoO(2) nanometric arrays and zinc metal as the cathode and anode, respectively, and shows a capacity retention of approximately 78% after 25000 cycles at 32âA/g. In particular, the battery cathode and perovskite material of the solar cell are combined in a sandwich joint electrode unit. As a result, the device delivers a specific power of 54âkW/kg and specific energy of 366âWh/kg at 32âA/g and 2âA/g, respectively. Moreover, benefiting from its narrow voltage range (1.40-1.90âV), the device demonstrates an efficiency of approximately 6%, which is stable for 200 photocharge and discharge cycles.
Coupling aqueous zinc batteries and perovskite solar cells for simultaneous energy harvest, conversion and storage.
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作者:Chen Peng, Li Tian-Tian, Yang Yuan-Bo, Li Guo-Ran, Gao Xue-Ping
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2022 | 起止号: | 2022 Jan 10; 13(1):64 |
| doi: | 10.1038/s41467-021-27791-7 | ||
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