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Light-assisted delithiation of lithium iron phosphate nanocrystals towards photo-rechargeable lithium ion batteries

机译:磷酸铁锂纳米晶体对光可充电锂离子电池的光辅助脱锂

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摘要

Recently, intensive efforts are dedicated to convert and store the solar energy in a single device. Herein, dye-synthesized solar cell technology is combined with lithium-ion materials to investigate light-assisted battery charging. In particular we report the direct photo-oxidation of lithium iron phosphate nanocrystals in the presence of a dye as a hybrid photo-cathode in a two-electrode system, with lithium metal as anode and lithium hexafluorophosphate in carbonate-based electrolyte; a configuration corresponding to lithium ion battery charging. Dye-sensitization generates electron–hole pairs with the holes aiding the delithiation of lithium iron phosphate at the cathode and electrons utilized in the formation of a solid electrolyte interface at the anode via oxygen reduction. Lithium iron phosphate acts effectively as a reversible redox agent for the regeneration of the dye. Our findings provide possibilities in advancing the design principles for photo-rechargeable lithium ion batteries.
机译:近来,致力于将太阳能转换和存储在单个设备中的努力。本文将染料合成的太阳能电池技术与锂离子材料结合起来,以研究光辅助电池的充电。特别地,我们报道了在存在作为双电极系统中的杂化光阴极的染料的情况下,磷酸铁锂纳米晶体的直接光氧化,其中锂金属作为阳极,六氟磷酸锂在碳酸盐基电解质中;对应于锂离子电池充电的配置。染料敏化产生电子-空穴对,空穴帮助阴极上磷酸铁锂的脱锂,而电子则通过氧还原作用在阳极上形成固体电解质界面。磷酸铁锂有效地用作染料再生的可逆氧化还原剂。我们的发现为改进可充电锂离子电池的设计原理提供了可能性。

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