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用于优化碱金属离子电池电化学性能的魔方型PBA框架。

Rubik's cube PBA frameworks for optimizing the electrochemical performance in alkali metal-ion batteries.

作者信息

Shi Yuxin, Yang Biao, Song Gongjing, Li Yong, Li Wenting, Guo Xiaotian, Shakouri Mohsen, Pang Huan

机构信息

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, 225002 Jiangsu, PR China.

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, 225002 Jiangsu, PR China; School of Materials Science & Engineering, ChangZhou University ChangZhou, 213164 Jiangsu, PR China.

出版信息

J Colloid Interface Sci. 2024 Nov;673:807-816. doi: 10.1016/j.jcis.2024.06.032. Epub 2024 Jun 5.

Abstract

PBA frameworks have stood out among metal-organic frameworks because of their easy preparation, excellent stability, porous structures, and rich redox properties. Unfortunately, their non-ideal conductivity and significant volume expansion during cycling prevent more widespread application in alkali-metal-ion (Li, Na, and K) batteries. By changing the type and molar ratio of metal ions, Rubik's PBA frameworks with infinite structural variations were obtained in this study, just like the Rubik's cube undergoes infinite changes during the rotation. X-ray adsorption fine structure measurements have documented the existence and determined the coordination environment of the metal ions in the Rubik's PBA framework. Benefiting from the more stable Rubik's cube structures with diverse composition, enhanced conductivity, and greater adsorption capacity, the obtained Rubik's cubes CoM-PBA anodes, especially CoZn-PBA deliver the enhanced cycling and rate performance in all the alkali-metal-ion batteries. The findings are supported by density functional theory calculations. Ex-situ X-ray photoelectron spectroscopy, and in-situ X-ray diffraction measurements were undertaken to explore the storage mechanism of CoZn-PBA anodes. Our results further demonstrate that the Rubik's cube PBA framework-based materials could be widely applied in the field of alkali-metal-ion batteries.

摘要

由于制备简便、稳定性优异、具有多孔结构以及丰富的氧化还原特性,普鲁士蓝类似物(PBA)框架在金属有机框架中脱颖而出。不幸的是,它们不理想的导电性以及循环过程中显著的体积膨胀阻碍了其在碱金属离子(锂、钠和钾)电池中更广泛的应用。通过改变金属离子的类型和摩尔比,本研究获得了具有无限结构变化的魔方状PBA框架,就像魔方在旋转过程中会经历无限变化一样。X射线吸收精细结构测量记录了魔方状PBA框架中金属离子的存在并确定了其配位环境。得益于具有多样组成、更高导电性和更大吸附容量的更稳定的魔方结构,所制备的魔方状CoM-PBA阳极,尤其是CoZn-PBA,在所有碱金属离子电池中均展现出增强的循环性能和倍率性能。这些发现得到了密度泛函理论计算的支持。进行了非原位X射线光电子能谱和原位X射线衍射测量,以探究CoZn-PBA阳极的存储机制。我们的结果进一步证明,基于魔方状PBA框架的材料可广泛应用于碱金属离子电池领域。

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