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纳米木质素-聚吡咯纳米复合材料:合成、电学性能及其在能量转换应用中的性能

Nanolignin-polypyrrole nanocomposites: synthesis, electrical properties, and their performance in energy conversion applications.

作者信息

Eladgham Ebtesam H A, Abdel Rehim Mona H, Turky Gamal

机构信息

Solar Energy Department, Engineering Research Institute and New and Renewable Energy, National Research Centre 33 El Behooth St., Dokki Giza Egypt.

Packing and Packaging Materials Department, Institute of Chemical Industries Research, National Research Centre 33 El Behouth St., Dokki Giza Egypt

出版信息

RSC Adv. 2025 Aug 18;15(36):29149-29159. doi: 10.1039/d5ra04454e.

Abstract

Nanocomposites based on nanolignin (NL) and polypyrrole (PPy) are prepared oxidation polymerization. The chemical structure of the obtained nanocomposites was studied using FTIR and XRD and their morphology was studied by SEM. Broadband dielectric spectroscopy (BDS) was used to study the electrical and dielectric properties of the nanocomposites. The results showed that the dc-conductivity decreases remarkably as the NL concentration increases. It decreases significantly from 2.88 × 10 to 1.82 × 10 S cm as the NL concentration increases tenfold in the 5% composite form. However, an interfacial polarization that originated from the accumulation of charge carriers at PPy-NL interface became clearer as NL concentration increased. Moreover, NL exhibits weak electrical conductivity due to its semiconducting nature, resulting in a band gap of 1.25 eV in the near-infrared (IR) region. Pure NL yields low efficiencies when used as an electrolyte in dye-sensitized solar cells (DSSCs). However, incorporating the conducting polymer PPy significantly improves the performance of NL-based electrolytes. Increasing the NL ratio to 50% optimized the DSSC efficiency, leading to enhanced performance. Overall, the study demonstrates that the integration of PPy with NL significantly promotes the electrical and dielectric properties of the nanocomposites, improving their performance in energy conversion applications.

摘要

基于纳米木质素(NL)和聚吡咯(PPy)的纳米复合材料通过氧化聚合制备。使用傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)研究所得纳米复合材料的化学结构,并通过扫描电子显微镜(SEM)研究其形态。利用宽带介电谱(BDS)研究纳米复合材料的电学和介电性能。结果表明,随着NL浓度的增加,直流电导率显著降低。在5%的复合材料形式中,当NL浓度增加十倍时,其电导率从2.88×10显著降低至1.82×10 S/cm。然而,随着NL浓度的增加,源自PPy-NL界面处电荷载流子积累的界面极化变得更加明显。此外,由于其半导体性质,NL表现出较弱的导电性,在近红外(IR)区域的带隙为1.25 eV。当用作染料敏化太阳能电池(DSSC)的电解质时,纯NL的效率较低。然而,加入导电聚合物PPy显著提高了基于NL的电解质的性能。将NL比例提高到50%可优化DSSC效率,从而提高性能。总体而言,该研究表明PPy与NL的结合显著促进了纳米复合材料的电学和介电性能,提高了它们在能量转换应用中的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3594/12376884/dfdb89438456/d5ra04454e-f1.jpg

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