首页> 外文期刊>Journal of Macromolecular Science. Physics >Enhancement of Electrical and Optical Properties of Sodium Bromide Doped Carboxymethyl Cellulose Biopolymer Electrolyte Films
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Enhancement of Electrical and Optical Properties of Sodium Bromide Doped Carboxymethyl Cellulose Biopolymer Electrolyte Films

机译:增强溴化钠掺杂羧甲基纤维素生物聚合物电解质膜的电和光学性质

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摘要

Biodegradable ion conducting solid polymer electrolyte films of carboxymethyl cellulose (CMC) doped with sodium bromide (NaBr) with various weight percentages were prepared by a solution casting technique. Their structural, optical and electrical properties were studied by various experimental techniques in order to understand the impact of the sodium metal salt on the biopolymer CMC's properties. The optical parameters namely the optical bandgap energy and the refractive index, showed a significant variable variation with the metal salt concentration. The maximum dc conductivity was found to be ~5.15×10~(-4) S cm~(-1) at room temperature for the sample with 20wt% of NaBr content in the CMC matrix. The ionic conductivity and dielectric constant in general, increased with increase in metal salt content, affirming the increase in ion concentration. The calculated transference number showed that the conductivity was mainly due to ions. The increase in conductivity was due to an increase in degree of amorphousness of the polymer upon doping, as analyzed by their XRD spectra.
机译:通过溶液铸造技术制备掺杂有溴化钠(NaBR)的羧甲基纤维素(CMC)的可生物降解的离子传导固体聚合物电解薄膜,具有各种重量百分比。通过各种实验技术研究了它们的结构,光学和电性能,以了解钠金属盐对生物聚合物CMC性能的影响。光学参数即光学带隙能量和折射率,显示出具有金属盐浓度的显着变化。在CMC基质中,在室温下,在室温下发现最大直流电导率为约5.15×10〜(-4)Scm〜(-1)。离子电导率和介电常数一般,随着金属盐含量的增加而增加,肯定离子浓度的增加。计算的转移号显示导电性主要是由于离子。导电性的增加是由于聚合物在掺杂时的无定形程度的增加,通过其XRD光谱分析。

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