Neeru Sharma, Ashlesha P. Kawale, Arti Srivastava, Priyanka Chawla, Shivansh Tripathi, Mridula Tripathi
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引用次数: 0
摘要
摘要 本研究旨在评估在羧甲基纤维素基聚合物电解液中使用氧化锌(ZnO)纳米颗粒作为主要填料和石墨烯作为次要填料的潜力。通过 X 射线衍射 (XRD)、傅立叶变换红外光谱 (FT-IR)、扫描电子显微镜 (XRD) 对薄膜的结构和形态进行了表征。XRD 结果表明,氧化锌纳米粒子的加入降低了所制备生物聚合物电解质的结晶度。石墨烯作为辅助填料的加入进一步降低了制备的生物聚合物电解质薄膜的结晶度。傅立叶变换红外技术和扫描电镜图像证实了盐与聚合物基质的络合。由于石墨烯具有形成导电层的能力,加入少量石墨烯作为辅助填料可将 A.C. 电导率从 1.63 × 10-5 提高到 2.6 × 10-4 S cm-1。两种填料的协同作用有助于提高聚合物电解质薄膜的导电率。利用这种聚合物电解质层,可以制造出效率为 2.6% 的固态 DSSC。
Carboxymethyl Cellulose Based Biopolymer Electrolyte with Hybrid Fillers for Dye Sensitized Solar Cell
The aim of the present study is to evaluate the potential of both the use of zinc oxide (ZnO) nanoparticles as primary filler and graphene as secondary filler in carboxy methyl cellulose based polymer electrolyte. The films were characterized structurally and morphologically by X-ray diffraction (XRD), Fourier-transform infra red spectroscopy (FT-IR), scanning electron microscopy (XRD). XRD results showed that ZnO nanoparticles inclusion reduced the crystallinity of the prepared biopolymer electrolyte. Addition of graphene as secondary filler further reduced the crystallinity of the prepared biopolymer electrolyte film. The FTIR technique and SEM images confirmed the complexation of salts with the polymer matrix. Due to graphene’s ability to create conductive layers, the inclusion of a little amount of it as a supplementary filler increased the A.C. conductivity from 1.63 × 10–5 to 2.6 × 10–4 S cm–1. The synergistic effects of both fillers contributed to raising the polymer electrolyte film’s electrical conductivity. Utilizing this polymer electrolyte layer enabled the creation of a solid state DSSC with an efficiency of 2.6%.
期刊介绍:
Russian Journal of Electrochemistry is a journal that covers all aspects of research in modern electrochemistry. The journal welcomes submissions in English or Russian regardless of country and nationality of authors.