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首页> 外文期刊>International journal of hydrogen energy >Ionic liquid-SnO_2 nanoparticle hybrid electrolytes for secondary charge storage devices: Physicochemical and electrochemical studies
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Ionic liquid-SnO_2 nanoparticle hybrid electrolytes for secondary charge storage devices: Physicochemical and electrochemical studies

机译:用于二次电荷存储设备的离子液体-SnO_2纳米颗粒混合电解质:物理化学和电化学研究

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摘要

A series of nanoscale hybrid ionic fluids (NHIFs) has been prepared by tethering 1-ethyl-3-(3-trimethoxysilylpropyl)-imidazolium bis(trifluoromethanesulfonyl) imide ionic liquids to the surface of SnO2 nanoparticle, at different grafting densities. Investigations reveal that SnO2 nanocores with uniform particle size of 14-17 nm are uniformly dispersed in different NHIF matrices through strong covalent attachment. Thermal stability and mechanical properties of NHIFs are found to improve with increasing grafting density. Temperature dependent electrochemical cycling behaviour of NHIF at different grafting densities are thoroughly investigated. In comparison to pure ionic liquid, the hybrid ionic fluids show substantial enhancement in electrochemical properties, which further improve with increasing grating density. The electrochemical cell containing NHIFs as electrolytes show very good capacitance retentivity (90%) and long term cyclic stability above room temperature. Results obtained from the study demonstrate the applicability of these hybrid ionic fluids as promising electrolytes in secondary charge storage devices. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过将1-乙基-3-(3-三甲氧基甲硅烷基丙基)-咪唑双(三氟甲磺酰基)酰亚胺离子液体束缚在SnO2纳米粒子的表面,以不同的接枝密度,制备了一系列纳米级混合离子流体(NHIF)。研究表明,具有14-17 nm均匀粒径的SnO2纳米核通过强共价键合均匀地分散在不同的NHIF基质中。发现NHIF的热稳定性和机械性能随着接枝密度的增加而提高。彻底研究了NHIF在不同接枝密度下随温度变化的电化学循环行为。与纯离子液体相比,杂化离子液体的电化学性能显着提高,并且随着光栅密度的增加而进一步提高。含有NHIFs作为电解质的电化学电池在室温下显示出非常好的电容保持率(> 90%)和长期循环稳定性。从研究中获得的结果证明了这些杂化离子液体作为二次电荷存储设备中有希望的电解质的适用性。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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