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基于SDS软模板的聚吡咯化学聚合研究:物理、化学和电学性质

Study of Chemical Polymerization of Polypyrrole with SDS Soft Template: Physical, Chemical, and Electrical Properties.

作者信息

Samwang Thaneeya, Watanabe Nozomi Morishita, Okamoto Yukihiro, Srinives Sira, Umakoshi Hiroshi

机构信息

Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyamacho, Toyonaka 560-8531, Osaka, Japan.

Department of Chemical Engineering, Faculty of Engineering, Mahidol University, Salaya, Phuttamonthon, 25/25 Phuttamonthon 4 Road, Nakhon Pathom 73170, Thailand.

出版信息

ACS Omega. 2023 Dec 13;8(51):48946-48957. doi: 10.1021/acsomega.3c06511. eCollection 2023 Dec 26.

Abstract

Polypyrrole (PPy) is a conductive polymer known for its biocompatibility and ease of synthesis. Chemically polymerized PPy was synthesized in the presence of sodium dodecyl sulfate (SDS), showing correlations among chemical properties, physical morphology, and electrical properties. Focused synthesis parameters included the pyrrole (Py) concentration, SDS concentration, and ammonium persulfate (APS)/Py ratio. The addition of SDS during chemical polymerization influenced the physical morphology of PPy by altering the self-assembling process via micelle formation, yielding sheet-like morphologies. However, the phenomenon also relied heavily on other synthesis parameters. Varying SDS concentrations within the 0.01 to 0.30 M window produced PPy sheets with no significant difference in optical band gap or physical size. While using 0.10 M SDS, an increase in Py concentration from 0.10 to 0.30 M yielded a larger size of PPy as the morphology changed from sheet-like to irregular shape. The band gap dropped from 2.35 to 1.10 eV, and the conductivity rose from 6.80 × 10 to 9.40 × 10 S/m. With an increase in the APS/Py ratio, the PPy product changed from a random to a sheet-like form. The product provided a larger average size, a decreased band gap, and increased electrical conductivity. Py polymerization in the absence of SDS revealed no significant change in shape or size as the Py concentration increased from 0.10 to 0.30 M; only a sphere-like form was observed, with a large band gap and small conductivity. Results from Raman spectral analysis indicated a correlation between optical band gap, physical morphology, and bipolaron/polaron ratio, mainly at the wavelengths associated with C-C stretching and C-H deformation. The increase in average size was associated with a decrease in band gap and resistance as well as an increase in the bipolaron/polaron ratio. This work indicates a strong correlation between size, morphology, electrical properties, and the bipolaron/polaron ratio of PPy in the presence of SDS.

摘要

聚吡咯(PPy)是一种以生物相容性和易于合成为著称的导电聚合物。化学聚合的聚吡咯是在十二烷基硫酸钠(SDS)存在的情况下合成的,其化学性质、物理形态和电学性质之间存在相关性。重点研究的合成参数包括吡咯(Py)浓度、SDS浓度以及过硫酸铵(APS)/Py比例。化学聚合过程中添加SDS通过胶束形成改变自组装过程,从而影响聚吡咯的物理形态,产生片状形态。然而,这种现象也在很大程度上依赖于其他合成参数。在0.01至0.30 M范围内改变SDS浓度,得到的聚吡咯片在光学带隙或物理尺寸上没有显著差异。当使用0.10 M SDS时,随着Py浓度从0.10 M增加到0.30 M,由于形态从片状变为不规则形状,聚吡咯的尺寸变大。带隙从2.35 eV降至1.10 eV,电导率从6.80×10升至9.40×10 S/m。随着APS/Py比例的增加,聚吡咯产物从无规形态变为片状形态。产物的平均尺寸变大、带隙减小且电导率增加。在没有SDS的情况下进行Py聚合,当Py浓度从0.10 M增加到0.30 M时,形状和尺寸没有显著变化;只观察到球状形态,带隙大且电导率小。拉曼光谱分析结果表明,光学带隙、物理形态与双极化子/极化子比例之间存在相关性,主要在与C-C拉伸和C-H变形相关的波长处。平均尺寸的增加与带隙和电阻的减小以及双极化子/极化子比例的增加相关。这项工作表明在SDS存在的情况下,聚吡咯的尺寸、形态、电学性质和双极化子/极化子比例之间存在很强的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5ca/10753705/3284dce31204/ao3c06511_0001.jpg

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