Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC-Universidad de Zaragoza, Zaragoza, 50009, Spain.
Departamento de Química Física, Facultad de Ciencias, Universidad de Zaragoza, Plaza San Francisco, Zaragoza, 50009, Spain.
Small. 2023 Jul;19(28):e2301244. doi: 10.1002/smll.202301244. Epub 2023 Apr 3.
A Cu O-TiO photoelectrode is pr+oposed for simultaneous solar light energy harvesting and storing of electrochemical energy in an adapted lithium coin cell. The p-type Cu O semiconductor layer is the light harvester component of the photoelectrode and the TiO film performs as the capacitive layer. The rationale of the energy scheme shows that the photocharges generated in the Cu O semiconductor induce lithiation/delithiation processes in the TiO film as a function of the applied bias voltage and light power. A photorechargeable lithium button cell drilled on one side recharges with visible white light in ≈9 h in open circuit. It provides an energy density of ≈150 mAh g at 0.1 C discharge current in dark, and the overall efficiency is 0.29%. This work draws a new approach for the photoelectrode role to advance in monolithic rechargeable batteries.
提出了一种 CuO-TiO 光电电极,用于在适应的锂硬币电池中同时收集太阳能和存储电化学能量。p 型 CuO 半导体层是光电电极的光收集器组件,TiO 薄膜作为电容层。能量方案的基本原理表明,在 CuO 半导体中产生的光电荷在施加的偏置电压和光功率的作用下诱导 TiO 薄膜中的锂化/脱锂过程。在一侧钻有光可再充电锂电池的纽扣电池在开路中用可见白光约 9 小时即可再充电。在黑暗中以 0.1 C 放电电流提供约 150 mAh g 的能量密度,整体效率为 0.29%。这项工作为光电电极在整体可充电电池中的作用提供了一种新方法。