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Covalently bonded polyaniline-reduced graphene oxide/single-walled carbon nanotubes nanocomposites: influence of various dimensional carbon nanostructures on the electrochromic behavior of PANI

DOI:10.1038/s41428-020-0320-2 期刊:Polymer Journal 出版年份:2020 更新时间:2025-09-19 17:13:59
摘要: In this paper, water-dispersible and covalently bonded polyaniline-carbon nanostructures, including polyaniline-reduced graphene oxide (PANI-rGO), polyaniline-single-walled carbon nanotubes (PANI-SWCNTs), and polyaniline-reduced graphene oxide/single-walled carbon nanotube (PANI-rGO/SWCNTs) nanocomposites, were synthesized by grafting PANI onto p-phenylenediamine (PPD)-functionalized graphene oxide (GO) or single-walled carbon nanotubes (SWCNTs) using polystyrene sulfonate (PSS) as a macromolecular dopant agent. The structures and morphologies of the PANI, PANI-rGO, PANI-SWCNTs, and PANI-rGO/SWCNTs nanocomposites were characterized by Fourier transform infrared spectroscopy and scanning electron microscopy. The cyclic voltammetry and UV–vis spectra were performed on an electrochemical workstation and a UV–vis spectrometer, respectively. The results show that the electrochromic and electrochemical properties of nanocomposites can bene?t from the high conductivity of SWCNTs and the abundant active sites of rGO. When SWCNTs and rGO work together, their respective shortcomings are overcome, allowing the nanocomposite to exhibit the best electrochemical and electrochromic properties. The optical contrast increased from 0.38 for PANI to 0.52 for PANI-rGO/SWCNTs. The coloring and bleaching times decreased from 2.59 s and 2.39 s, respectively, for PANI to 1.33 and 0.78 s, respectively, for PANI-rGO/SWCNTs. The charge transfer resistance (Rct) decreased from 135 Ω for PANI to 30 Ω for PANI-rGO/SWCNTs. The synergistic effect of PANI, rGO, and SWCNTs can signi?cantly improve the electrochromic ability of PANI.
作者: Yuancheng Wang,Shanxin Xiong,Xiaoqin Wang,Jia Chu,Runlan Zhang,Ming Gong,Bohua Wu,Mengnan Qu,Zhen Li,Zhenming Chen
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To improve the electrochromic performance of polyaniline (PANI) by synthesizing covalently bonded polyaniline-carbon nanostructures nanocomposites.

The study successfully synthesized covalently bonded PANI-rGO, PANI-SWCNTs, and PANI-rGO/SWCNTs nanocomposites, which exhibited superior electrical conductivity and electrochromic properties compared to PANI. The PANI-rGO/SWCNTs nanocomposite showed the best performance, with increased optical contrast and reduced coloring and bleaching times, due to the synergistic effect of rGO and SWCNTs.

The study focuses on the synthesis and characterization of PANI-carbon nanostructures nanocomposites for electrochromic applications. Limitations may include the scalability of the synthesis process and the long-term stability of the nanocomposites under operational conditions.

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