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Structural Morphological Electrical and Electrochemical Properties of PVA: CS-Based Proton-Conducting Polymer Blend Electrolytes

机译:PVA:基于CS的质子传导聚合物共混物电解质的PVA的结构形态电化学和电化学性能

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摘要

Polymer blend electrolytes based on poly(vinyl alcohol):chitosan (PVA:CS) incorporated with various quantities of ammonium iodide were prepared and characterized using a range of electrochemical, structural and microscopic techniques. In the structural analysis, X-ray diffraction (XRD) was used to confirm the buildup of the amorphous phase. To reveal the effect of dopant addition on structural changes, field-emission scanning electron microscope (FESEM) was used. The protrusions of salt aggregates with large quantity were seen at the surface of the formed films at 50 wt.% of the added salt. The nature of the relationship between conductivity and dielectric properties was shown using electrochemical impedance spectroscopy (EIS). The EIS spectra were fitted with electrical equivalent circuits (EECs). It was observed that both dielectric constant and dielectric loss were high in the low-frequency region. For all samples, loss tangent and electric modulus plots were analyzed to become familiar with the relaxation behavior. Linear sweep voltammetry (LSV) and transference number measurement (TNM) were recorded. A relatively high cut-off potential for the polymer electrolyte was obtained at 1.33 V and both values of the transference number for ion (t ) and electronic (t ) showed the ion dominant as charge carrier species. The TNM and LSV measurements indicate the suitability of the samples for energy storage application if their conductivity can be more enhanced.
机译:制备了基于聚乙烯醇:壳聚糖(PVA:CS)并掺有各种碘化铵的聚合物共混电解质,并使用了一系列电化学,结构和显微技术对其进行了表征。在结构分析中,使用X射线衍射(XRD)确认非晶相的形成。为了揭示掺杂物对结构变化的影响,使用了场发射扫描电子显微镜(FESEM)。在所形成的膜的表面处,以所添加的盐的50wt。%可以看到大量盐聚集体的突起。使用电化学阻抗谱(EIS)显示了电导率和介电性能之间关系的性质。 EIS光谱配有等效电路(EEC)。观察到,在低频区域中,介电常数和介电损耗均较高。对于所有样品,分析其损耗角正切和电模量图,以熟悉松弛行为。记录线性扫描伏安法(LSV)和转移数测量(TNM)。在1.33V下获得了相对高的聚合物电解质的截止电位,并且离子(t)和电子(t)的转移数均显示出离子占优势,成为电荷载流子。 TNM和LSV测量表明,如果可以进一步提高样品的电导率,则它们适合储能应用。

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