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Sm_2O_3 composite PEO solid polymer electrolyte

机译:Sm_2O_3复合PEO固体聚合物电解质

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摘要

A novel lithium composite solid polymer electrolyte based on a polymer, poly(ethylene oxide) (PEO), and a rare earth oxide, Sm_2O_3, is reported. The incorporation of lithium salt and samarium oxide to PEO shows a dramatic modification of surface morphology. Scanning electron microscopy (SEM) shows that at a low Sm_2O_3 content, the polymer film displays smooth morphology. This indicates that satisfactory interaction takes place between the oxides and the polymer in the presence of the salt. Differential scanning calorimetry (DSC) results corroborate the SEM micrographs, where the crystallinity decreases further to 10% when compared with a pure PEO/Li salt polymer electrolyte. ~7Li magic angle spinning (MAS) NMR spectra suggest two major lithium species attributed to the Li~+ ions associated with amorphous PEO and Sm_2O_3. The conductivity in the composite electrolyte is one order of magnitude higher compared with pure PEO/Li electrolyte. The oxide―salt complex functions as cross-linking centres for the PEO segments and establishes additional pathways to conduct ions through the filler surface, thus complements ion movement. The ionic conductivity decreases, with increasing content of Sm_2O_3 to over 10 wt.% where an aggregated Sim_2O_3:Li-rich domain is identified.
机译:报道了一种基于聚合物,聚环氧乙烷(PEO)和稀土氧化物Sm_2O_3的新型锂复合固体聚合物电解质。锂盐和氧化mar向PEO的掺入显示了表面形态的显着改变。扫描电子显微镜(SEM)表明,在低Sm_2O_3含量下,聚合物膜显示出平滑的形态。这表明在盐的存在下,氧化物和聚合物之间发生了令人满意的相互作用。差示扫描量热法(DSC)的结果证实了SEM的显微照片,与纯PEO / Li盐聚合物电解质相比,其结晶度进一步降低至10%。 〜7Li魔角旋转(MAS)NMR光谱表明,两种主要的锂物质归因于与非晶PEO和Sm_2O_3相关的Li〜+离子。与纯PEO / Li电解质相比,复合电解质中的电导率高一个数量级。氧化物-盐配合物充当PEO链段的交联中心,并建立了额外的途径来传导离子通过填料表面,从而补充了离子的运动。随着Sm_2O_3含量的增加,离子电导率降低至超过10 wt。%,其中发现了聚集的Sim_2O_3:Li富集域。

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