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基于 NiCoS 纳米片的双功能太阳能可再充电电池,用于多场景太阳能转换和存储。

Dual-duty NiCoS nanosheet-based solar rechargeable batteries toward multi-scene solar energy conversion and storage.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, P. Box 98, Beisanhuan East Road 15, Beijing 100029, P. R. China.

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, P. Box 98, Beisanhuan East Road 15, Beijing 100029, PR China.

出版信息

Nanoscale. 2023 Jun 30;15(25):10584-10592. doi: 10.1039/d3nr01483e.

DOI:10.1039/d3nr01483e
PMID:37272805
Abstract

Solar energy has the potential to be the next-generation power source if the intermittent nature can be overcome rational energy storage engineering. The competitiveness of solar rechargeable batteries can be further enhanced if the demand for multiple energy storage scenarios can be met within one device. Moreover, active electrochemical materials with different energy storage types are the critical component of this energy storage system. In this work, dual-duty electrochemical functional materials were introduced to guide multi-scene solar energy storage device design and fabrication. Furthermore, dual-duty NiCoS nanosheets were prepared and applied to solar rechargeable batteries. A photo-assisted aqueous polysulfide/iodide flow battery was designed and fabricated with a charging voltage as low as 0.05 V, showing the good electrocatalytic performance of NiCoS nanosheets for aqueous redox couples. Moreover, the low charging voltage leads to 93.5% of input electric energy saving under one sun illumination (AM 1.5, 100 mW cm). On the other hand is the photo-assisted sodium-ion battery with a NiCoS anode, showing a remarkably low charging voltage of 0.67 V and a high discharge medium voltage of 1.05 V. The battery can save about 67.6% of input electric energy under 1 sun illumination.

摘要

如果能够克服间歇性问题并采用合理的储能工程,太阳能就有可能成为下一代能源。如果能够在一个装置中满足多种储能场景的需求,那么太阳能可充电电池的竞争力将进一步提高。此外,具有不同储能类型的活性电化学材料是该储能系统的关键组成部分。在这项工作中,引入了双功能电化学功能材料,以指导多场景太阳能存储设备的设计和制造。此外,还制备并应用了双功能 NiCoS 纳米片到太阳能可充电电池中。设计并制造了一种光辅助的水性多硫化物/碘流电池,其充电电压低至 0.05 V,展示了 NiCoS 纳米片对水性氧化还原对的良好电催化性能。此外,低充电电压导致在 1 个太阳光照下(AM 1.5,100 mW cm)输入电能节省 93.5%。另一方面是具有 NiCoS 阳极的光辅助钠离子电池,其充电电压低至 0.67 V,放电中压高达 1.05 V。该电池在 1 个太阳光照下可节省约 67.6%的输入电能。

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