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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >New polymer-matrix nanocomposites based on SWCNTs and PVK-PPV copolymer: Synthesis, functionalization and characterization
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New polymer-matrix nanocomposites based on SWCNTs and PVK-PPV copolymer: Synthesis, functionalization and characterization

机译:基于SWCNT和PVK-PPV共聚物的新的聚合物 - 基质纳米复合材料:合成,官能化和表征

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An original nanocomposite material was prepared by in-situ grafting of a PVK-PPV copolymer onto SWCNTs. The new composites were elaborated with various SWCNTs weight concentrations into homemade PVK-PPV copolymer. Different experimental analyses were performed to investigate their morphological features and their optical and vibrational spectroscopy behaviors as a function of the concentration of carbon nanotubes. II-staking and covalent interactions and functionalization process between copolymer and SWCNT undergo dramatic effect in vibrational and photoemissives properties of copolymer matrix. Transmission (TEM) and scanning electron microscopy (SEM) were used. Then, resonant Raman scattering and steady-state and time-resolved photoluminescence (PL) and (TRPL) measurements were used to study the evolution of the spectroscopic characteristics and optical properties of PVK-PPV/SWCNTs composites. As results, we have observed PL quenching effect and a decrease of average life time. These indicated the processing of a charge transfer that leads to exciton dissociations to the SWCNTs matrix. Such results, also supported by modelling based on DFT method, have given a strong evidence of the functionalization and the charge transfer between the SWCNTs and the PVK-PPV copolymer and predicted a structure-properties correlation. (C) 2018 Published by Elsevier B.V.
机译:通过原位接枝PVK-PPV共聚物在SWCNT上进行原始纳米复合材料。用各种SWCNTs重量浓度阐述新复合材料进入自制PVK-PPV共聚物中。根据碳纳米管浓度的函数,进行不同的实验分析以研究它们的形态特征及其光学和振动光谱行为。二聚体和SWCNT在共聚物基质的振动和光明性特性中的浮动和共价相互作用和官能化过程。使用透射(TEM)和扫描电子显微镜(SEM)。然后,使用共振拉曼散射和稳态和时间分离的光致发光(PL)和(TRPL)测量来研究PVK-PPV / SWCNTS复合材料的光谱特性和光学性质的演变。结果,我们观察了PL淬火效应和平均寿命的降低。这些指示加工电荷转移,导致激发器对SWCNTS矩阵的激子解离。通过基于DFT方法的建模支持的这种结果具有强大的证据证明了SWCNT和PVK-PPV共聚物之间的官能化和电荷转移,并预测了结构性质的相关性。 (c)2018由elestvier b.v出版。

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