材料科学
阴极
催化作用
单层
补偿(心理学)
纳米技术
化学工程
物理化学
有机化学
心理学
化学
精神分析
工程类
作者
Dongmei Zhang,Guoliang Zhang,Ruoqing Liu,Ruonan Yang,Xia Li,Xiuqi Zhang,Han Yu,Pengxiang Zhang,Bao‐Wen Li,Hua Hou,Zhanhu Guo,Feng Dang
标识
DOI:10.1002/adfm.202414679
摘要
Abstract 2D materials exhibit remarkable electrochemical performance as the cathode catalyst in lithium–oxygen batteries (LOBs). Their catalytic capability mainly derives from their 2D surface with tunable surface chemistry and unique electronic states. Herein, Ti 0.87 O 2 and Ti 3 C 2 MXene monolayers are applied to construct a face/face 2D heterostructure to enhance the catalytic performance in LOBs. It is demonstrated that electronic compensation from the O‐terminated MXene to Ti 0.87 O 2 side is achieved through the built‐in electric field and the overlap of Ti 3 d and O 2 p orbitals between Ti 0.87 O 2 and MXene units. As a result, the ORR/OER catalytic activity is improved in Ti 0.87 O 2 /MXene heterojunction due to the modulated p ‐band center that optimizes the s–p coupling with the key intermediate LiO 2 . The Ti 0.87 O 2 /MXene cathode presents a structural stability and long‐term cycling life of 425 cycles (2534 h) at 200 mA g −1 and 407 cycles at 1000 mA g −1 with a fixed capacity of 600 mAh g −1 , being nearly five and three times higher than that of pure Ti 0.87 O 2 and MXene cathodes, respectively.
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