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通过核磁共振(NMR)和电子顺磁共振(EPR)光谱法测定原始电池电解质溶液中溶解过渡金属的配位情况。

Coordination of dissolved transition metals in pristine battery electrolyte solutions determined by NMR and EPR spectroscopy.

作者信息

Allen Jennifer P, Szczuka Conrad, Smith Holly E, Jónsson Erlendur, Eichel Rüdiger-A, Granwehr Josef, Grey Clare P

机构信息

Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, Cambridge, UK.

The Faraday Institution, Quad One, Harwell Science and Innovation Campus, Didcot OX11 0RA, UK.

出版信息

Phys Chem Chem Phys. 2024 Jul 17;26(28):19505-19520. doi: 10.1039/d4cp01663g.

Abstract

The solvation of dissolved transition metal ions in lithium-ion battery electrolytes is not well-characterised experimentally, although it is important for battery degradation mechanisms governed by metal dissolution, deposition, and reactivity in solution. This work identifies the coordinating species in the Mn and Ni solvation spheres in LiPF/LiTFSI-carbonate electrolyte solutions by examining the electron-nuclear spin interactions, which are probed by pulsed EPR and paramagnetic NMR spectroscopy. These techniques investigate solvation in frozen electrolytes and in the liquid state at ambient temperature, respectively, also probing the bound states and dynamics of the complexes involving the ions. Mn and Ni are shown to primarily coordinate to ethylene carbonate (EC) in the first coordination sphere, while PF is found primarily in the second coordination sphere, although a degree of contact ion pairing does appear to occur, particularly in electrolytes with low EC concentrations. NMR results suggest that Mn coordinates more strongly to PF than to TFSI, while the opposite is true for Ni. This work provides a framework to experimentally determine the coordination spheres of paramagnetic metals in battery electrolyte solutions.

摘要

锂离子电池电解质中溶解的过渡金属离子的溶剂化作用,虽然对于由金属在溶液中的溶解、沉积和反应性所控制的电池降解机制很重要,但在实验上并未得到很好的表征。这项工作通过研究电子-核自旋相互作用,确定了LiPF₆/LiTFSI-碳酸盐电解质溶液中Mn和Ni溶剂化层中的配位物种,这些相互作用通过脉冲EPR和顺磁NMR光谱进行探测。这些技术分别研究了冷冻电解质和室温下液态中的溶剂化作用,同时也探测了涉及离子的配合物的束缚态和动力学。结果表明,Mn和Ni在第一配位层中主要与碳酸亚乙酯(EC)配位,而PF主要存在于第二配位层中,不过确实出现了一定程度的接触离子对,特别是在EC浓度较低的电解质中。NMR结果表明,Mn与PF的配位比与TFSI的配位更强,而Ni的情况则相反。这项工作提供了一个通过实验确定电池电解质溶液中顺磁金属配位层的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a7/11253248/721704db3660/d4cp01663g-f1.jpg

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