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首页> 外文期刊>ACS applied materials & interfaces >Formation of One-Dimensional Coordination Chains for High Performance Anode Materials of Lithium-Ion Batteries via a Bottom Up Approach
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Formation of One-Dimensional Coordination Chains for High Performance Anode Materials of Lithium-Ion Batteries via a Bottom Up Approach

机译:通过底部接近形成锂离子电池高性能阳极材料的一维配位链

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摘要

Understanding the chemistry of coordination compounds as lithium storage materials is significant for advancing lithium-ion batteries' technology. Coordination compounds have become a new family of versatile anode materials because the metal center, the ligand, and the nonrigid crystal structure can simultaneously contribute to the lithium storage capacity. However, the capacities and cycling abilities of coordination compounds are relatively low in comparison to inorganic nanomaterials, and the mechanism for lithium storage is unclear. This work reports that linking the mononuclear complex [Ni(PBIM)2(HIPA)] (1), where PBIM = 2- (2-pyridyl)benzimidazole, and HIPA = 5hydroxyisophthalic acid, to a one-dimensional coordination polymer [Ni(PBIM)(HIPA)] (2) via coordination bonds by a facile bottom-up assembly route can significantly enhance the lithium storage capacity from 554 mA h g-1 of 1 to 1025 mA h of 2 at 100 mA CI. A combined experimental and theoretical study shows that the favorable lithium-ion diffusion pathways afforded by the coordination-chain-based structure of 2 are responsible for its superior electrochemical property.
机译:理解协调化合物的化学化合物作为锂储存材料对于推进锂离子电池的技术具有重要意义。配位化合物已成为一种新的多功能阳极材料家族,因为金属中心,配体和非抗晶体结构可以同时促进锂储存能力。然而,与无机纳米材料相比,配位化合物的容量和循环能力相对较低,并且锂储存机制尚不清楚。该工作报告称单核络合物[Ni(PBIM)2(HIPA)](1),其中PBIM = 2-(2-吡啶基)苯并咪唑和HIPA = 5羟基苯二甲酸,与一维配位聚合物[Ni( PBIM)(HIPA)](2)通过容易自下而上的装配途径通过配位键可以显着提高554mA H-1的锂储存能力,共1至1025 mA H为100 mA Ci。组合的实验和理论研究表明,由2的配位链结构提供有利的锂离子扩散途径,其负责其优异的电化学性能。

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