光电阴极
材料科学
电池(电)
阴极
氮化碳
碳纳米管
碳纤维
氮化物
光电子学
纳米技术
电子
光催化
化学
功率(物理)
复合材料
催化作用
物理化学
物理
复合数
量子力学
生物化学
图层(电子)
作者
Jiaxin Li,Kun Zhang,Yang Zhao,Chuang Wang,Lipeng Wang,Lie Wang,Meng Liao,Lei Ye,Ye Zhang,Yue Gao,Bingjie Wang,Huisheng Peng
标识
DOI:10.1002/anie.202114612
摘要
Li-CO2 batteries are explored as promising power systems to alleviate environmental issues and to implement space applications. However, sluggish cathode kinetics of CO2 reduction/evolution result in low round-trip efficiency and poor cycling stability of the fabricated energy-storage devices. Herein, we design a heterostructued photocathode comprising carbon nanotube and carbon nitride to accelerate cathode reactions of a Li-CO2 battery under illumination. Benefiting from the unique defective structure of carbon nitride and favorable interfacial charge transfer, the photocathode effectively harvests ultraviolet-visible light to generate abundant photoexcited carriers and coordinates energetic photoelectrons/holes to participate in the discharge/charge reactions, leading to efficient photo-energy utilization in decreasing reaction barriers and enhancing thermodynamic reversibility of Li-CO2 battery. The resulting battery delivers a high round-trip efficiency of 98.8 % (ultralow voltage hysteresis of 0.04 V) and superior cycling stability (86.1 % efficiency retention after 100 cycles).
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