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首页> 外文期刊>Angewandte Chemie >Multielectron-Transfer-based Rechargeable Energy Storage of Two-Dimensional Coordination Frameworks with Non-Innocent Ligands
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Multielectron-Transfer-based Rechargeable Energy Storage of Two-Dimensional Coordination Frameworks with Non-Innocent Ligands

机译:基于多电元传递的基于转移的可充电能量存储,其二维配位框架与非无限配体

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摘要

The metallically conductive bis(diimino)nickel framework (NiDI), an emerging class of metal-organic framework (MOF) analogues consisting of two-dimensional (2D) coordination networks, was found to have an energy storage principle that uses both cation and anion insertion. This principle gives high energy led by a multielectron transfer reaction: Its specific capacity is one of the highest among MOF-based cathode materials in rechargeable energy storage devices, with stable cycling performance up to 300 cycles. This mechanism was studied by a wide spectrum of electrochemical techniques combined with density-functional calculations. This work shows that a rationally designed material system of conductive 2D coordination networks can be promising electrode materials for many types of energy devices.
机译:金属导电双(DIIMININ)镍框架(NIDI),由二维(2D)协调网络组成的金属有机框架(MOF)类似物的新出现类别,具有使用阳离子和阴离子的能量存储原理 插入。 该原理通过多电元转移反应提供高能量LED:其特定容量是可充电能量存储装置中的基于MOF的阴极材料中最高的能力之一,具有稳定的循环性能,可达300次循环。 通过与密度官能计算结合的宽光谱研究该机制。 这项工作表明,可理性设计的导电2D协调网络的材料系统可以是许多类型的能量装置的电极材料。

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