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锂离子导电 MC 基生物聚合物共混电解质的电化学和离子输运研究。

Electrochemical and Ion Transport Studies of Li Ion-Conducting MC-Based Biopolymer Blend Electrolytes.

机构信息

Associate Chair of the Department of Mathematics and Science, Woman Campus, Prince Sultan University, P.O. Box 66833, Riyadh 11586, Saudi Arabia.

Hameed Majid Advanced Polymeric Materials Research Lab., Physics Department, College of Science, University of Sulaimani, Qlyasan Street, Kurdistan Regional Government, Sulaimani 46001, Iraq.

出版信息

Int J Mol Sci. 2022 Aug 15;23(16):9152. doi: 10.3390/ijms23169152.

Abstract

A facile methodology system for synthesizing solid polymer electrolytes (SPEs) based on methylcellulose, dextran, lithium perchlorate (as ionic sources), and glycerol (such as a plasticizer) (MC:Dex:LiClO:Glycerol) has been implemented. Fourier transform infrared spectroscopy (FTIR) and two imperative electrochemical techniques, including linear sweep voltammetry (LSV) and electrical impedance spectroscopy (EIS), were performed on the films to analyze their structural and electrical properties. The FTIR spectra verify the interactions between the electrolyte components. Following this, a further calculation was performed to determine free ions (FI) and contact ion pairs (CIP) from the deconvolution of the peak associated with the anion. It is verified that the electrolyte containing the highest amount of glycerol plasticizer (MDLG3) has shown a maximum conductivity of 1.45 × 10 S cm. Moreover, for other transport parameters, the mobility (), number density (), and diffusion coefficient () of ions were enhanced effectively. The transference number measurement (TNM) of electrons () was 0.024 and 0.976 corresponding to ions (). One of the prepared samples (MDLG3) had 3.0 V as the voltage stability of the electrolyte.

摘要

已经实施了一种基于甲基纤维素、葡聚糖、高氯酸锂(作为离子源)和甘油(如增塑剂)的固态聚合物电解质(SPE)的简便合成方法体系(MC:Dex:LiClO:Glycerol)。对薄膜进行傅里叶变换红外光谱(FTIR)和两种重要的电化学技术,包括线性扫描伏安法(LSV)和交流阻抗谱(EIS),以分析其结构和电性能。FTIR 光谱验证了电解质成分之间的相互作用。在此之后,通过对与阴离子相关的峰进行解卷积,进一步计算了自由离子(FI)和接触离子对(CIP)。结果表明,含有最高量甘油增塑剂的电解质(MDLG3)表现出 1.45×10 S cm 的最大电导率。此外,对于其他传输参数,离子的迁移率()、数密度()和扩散系数()得到了有效提高。电子的迁移数测量(TNM)()分别为 0.024 和 0.976,对应于离子()。其中一个制备的样品(MDLG3)具有 3.0 V 的电解质电压稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da32/9409367/c7a91b6b28f5/ijms-23-09152-g001.jpg

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