研究论文
A kinetic barrier modulated hollow nanobox MoSe <sub>2</sub> @CuS core–shell heterostructure for high-rate and durable Li–O <sub>2</sub> batteries
Guangqi Zhang, Congcong Dang, Yiping Liu, Rouyan Guo, Lingti Kong, Liancheng Zhao, Liming Gao
Shanghai Jiao Tong University Northeast Normal University
内容与影响
摘要 · 完整
Hollow MoSe 2 @CuS core–shell heterostructures enhance Li–O 2 battery efficiency through synergistic electronic and structural engineering, with DFT insights revealing reduced kinetic barriers for reversible Li 2 O 2 reactions.
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0.92
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前 27%
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同领域 · 同年份 · 同类型
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学术脉络
学科主题
工程Advancements in Battery Materials
Advanced Battery Materials and Technologies · Chemical Synthesis and Characterization
参考文献 56
Solid-state activation of Li <sub>2</sub> O <sub>2</sub> oxidation kinetics and implications for Li–O <sub>2</sub> batteries
被引 79Koffi P. C. Yao, Marcel Risch, Sayed Youssef Sayed · Energy & Environmental Science · 2015
Influence of elevated surface texture hydrated titania on Ce-doped Mn/TiO2 catalysts for the low-temperature SCR of NO under oxygen-rich conditions
被引 479Thirupathi Boningari, Padmanabha Reddy Ettireddy, Arpad Somogyvari · Journal of Catalysis · 2015
Potential-Dependent Generation of O<sub>2</sub><sup>–</sup> and LiO<sub>2</sub> and Their Critical Roles in O<sub>2</sub> Reduction to Li<sub>2</sub>O<sub>2</sub> in Aprotic Li–O<sub>2</sub> Batteries
被引 185Yelong Zhang, Xinmin Zhang, Jiawei Wang · The Journal of Physical Chemistry C · 2016
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施引文献 3
Defect‐Morphology Dual Strategy to Achieve Coral‐Like La <sub>1‐</sub> <i> <sub>x</sub> </i> Ni <sub>0.5‐y</sub> Fe <sub>0.5</sub> O <sub>3‐δ</sub> /NiO Bifunctional Catalysts for High‐Performance Li‐O <sub>2</sub> Batteries
被引 0Linlin Liu, Heng Zhang, Xiaoyan Du · Small · 2026
Coaxial One‐Dimensional Nanowires: Artificial Interface Engineering for Next‐Generation Energy Storage
被引 0Qin Su, Juan Ji, Weixiao Wang · Small · 2026
The construction of hierarchically porous CuO/CuS nanocubes for highly sensitive nonenzymatic glucose detection
被引 0Tiantian Zhao, Lihong Peng, Shijie Sun · New Journal of Chemistry · 2026
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