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用于储能系统的基于离子液体和SiO纳米颗粒的新型网络聚合物电解质

New Network Polymer Electrolytes Based on Ionic Liquid and SiO Nanoparticles for Energy Storage Systems.

作者信息

Khatmullina Kyunsylu G, Slesarenko Nikita A, Chernyak Alexander V, Baymuratova Guzaliya R, Yudina Alena V, Berezin Mikhail P, Tulibaeva Galiya Z, Slesarenko Anna A, Shestakov Alexander F, Yarmolenko Olga V

机构信息

Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry RAS, 142432 Chernogolovka, Russia.

Department of Chemistry and Electrochemical Energy, Institute of Energy Efficiency and Hydrogen Technologies (IEEHT), Moscow Power Engineering Institute, National Research University, 111250 Moscow, Russia.

出版信息

Membranes (Basel). 2023 May 24;13(6):548. doi: 10.3390/membranes13060548.

Abstract

Elementary processes of electro mass transfer in the nanocomposite polymer electrolyte system by pulse field gradient, spin echo NMR spectroscopy and the high-resolution NMR method together with electrochemical impedance spectroscopy are examined. The new nanocomposite polymer gel electrolytes consisted of polyethylene glycol diacrylate (PEGDA), salt LiBF and 1-ethyl-3-methylimidazolium tetrafluoroborate (EMIBF) and SiO nanoparticles. Kinetics of the PEGDA matrix formation was studied by isothermal calorimetry. The flexible polymer-ionic liquid films were studied by IRFT spectroscopy, differential scanning calorimetry and temperature gravimetric analysis. The total conductivity in these systems was about 10 S cm (-40 °C), 10 S cm (25 °C) and 10 S cm (100 °C). The method of quantum-chemical modeling of the interaction of SiO nanoparticles with ions showed the advantage of the mixed adsorption process, in which a negatively charged surface layer is formed from Li BF ions on silicon dioxide particles and then from ions of the ionic liquid EMI BF. These electrolytes are promising for use both in lithium power sources and in supercapacitors. The paper shows preliminary tests of a lithium cell with an organic electrode based on a pentaazapentacene derivative for 110 charge-discharge cycles.

摘要

通过脉冲场梯度、自旋回波核磁共振光谱法、高分辨率核磁共振方法以及电化学阻抗谱,研究了纳米复合聚合物电解质体系中的电质量转移基本过程。新型纳米复合聚合物凝胶电解质由聚乙二醇二丙烯酸酯(PEGDA)、盐LiBF和1-乙基-3-甲基咪唑四氟硼酸盐(EMIBF)以及SiO纳米颗粒组成。通过等温量热法研究了PEGDA基质形成的动力学。通过红外傅里叶变换光谱、差示扫描量热法和热重分析对柔性聚合物-离子液体薄膜进行了研究。这些体系中的总电导率在-40℃时约为10 S cm⁻⁴,25℃时约为10 S cm⁻¹,100℃时约为10 S cm⁻¹。SiO纳米颗粒与离子相互作用的量子化学建模方法显示了混合吸附过程的优势,即在二氧化硅颗粒上由Li BF离子形成带负电荷的表面层,然后由离子液体EMI BF的离子形成。这些电解质有望用于锂电源和超级电容器。本文展示了基于五氮杂并五苯衍生物的有机电极锂电池进行110次充放电循环的初步测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6c0/10301224/d0858a86d067/membranes-13-00548-g001.jpg

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