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首页> 外文期刊>Polymer Testing >Electrochemical and chemiluminescence properties of polyaniline/pectin hybrid nanocomposites based on graphene and CdS nanoparticles
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Electrochemical and chemiluminescence properties of polyaniline/pectin hybrid nanocomposites based on graphene and CdS nanoparticles

机译:基于石墨烯和CDS纳米粒子的聚苯胺/果胶杂交纳米复合材料的电化学和化学发光性能

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Incorporation of CdS nanoparticles is a suitable strategy to improve interfacial features, electrical and optical properties in polyaniline/graphene composites. In the other hand, use of biopolymers in addition to the improvement of processability of polyaniline composites leads to the creation of a developed functional surface owing to the affinity of biopolymers with the surfaces of inorganic nanomaterials. For this purpose in this work, we synthesized a hydrolyzed pectin-polyaniline copolymer (HP-PA) and its nanocomposites with graphene (GR) and CdS nanoparticles via a heterogeneous emulsion polymerization method. The samples were identified by FTIR, XRD, SEM, TEM, EDX, DSC and TGA analyses and investigated via electrical, electrochemical and chemiluminescence properties. Electrical conductivity showed a large increase about three orders of magnitude in conductivity of the nanocomposites compared to the copolymer sample. Electrochemical analyses (CV and EIS) demonstrated higher charge transfer ability for the nanocomposites than the HP-PA copolymer and a substantial improvement in electrochemical performance of GR/CdS@HP-PA due to the reinforcing effect of the CdS nanoparticles in electron transfer process. The optical properties of the samples exhibited a significant enhancement of chemiluminescence intensity for GR/CdS@HP-PA nanocomposite owing to the supporting effect of CdS nanoparticles in electron transfers and light emission.
机译:CD纳米粒子的掺入是一种合适的策略,以改善聚苯胺/石墨烯复合材料中的界面特征,电气和光学性质。另一方面,除了改善聚苯胺复合材料的改善之外的生物聚合物的使用导致由于生物聚合物与无机纳米材料表面的辅助性而导致产生的功能表面的产生。为此目的,在这项工作中,我们通过非均相乳液聚合方法合成了用石墨烯(GR)和CDS纳米颗粒的水解果胶 - 聚苯胺共聚物(HP-PA)及其纳米复合材料。通过FTIR,XRD,SEM,TEM,EDX,DSC和TGA分析并通过电化学和化学发光性研究来鉴定样品。与共聚物样品相比,电导率在纳米复合材料的电导率下大约增加了大约三个数量级。电化学分析(CV和EIS)表现出纳米复合材料的较高电荷转移能力,而不是HP-PA共聚物,并且由于CDS纳米颗粒在电子转移过程中的增强效应,GR / CDS @ HP-PA的电化学性能的显着提高。由于CDS纳米颗粒在电子转移和发光中,样品的光学发光强度显着提高了GR / CDS XP-PA纳米复合材料的显着增强。

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