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由具有内置表面活性剂的稳定纳米颗粒实现的有机半导体水相处理。

Aqueous processing of organic semiconductors enabled by stable nanoparticles with built-in surfactants.

作者信息

Marcial-Hernandez Raymundo, Giacalone Sofia, Neal William G, Lee Chang-Seuk, Gilhooly-Finn Peter A, Mastroianni Giulia, Meli Dilara, Wu Ruiheng, Rivnay Jonathan, Palma Matteo, Nielsen Christian B

机构信息

Department of Chemistry, Queen Mary University of London, Mile End Road, London E1 4NS, UK.

School of Biological and Behavioural Sciences, Queen Mary University of London, Mile End Road, London E1 4NS, UK.

出版信息

Nanoscale. 2023 Apr 6;15(14):6793-6801. doi: 10.1039/d2nr06024h.

Abstract

The introduction of oligoether side chains onto a polymer backbone can help to stabilise polymeric dispersions in water without the necessity of surfactants or additives when conjugated polymer nanoparticles are prepared. A series of poly(3-hexylthiophene) (P3HT) derivatives with different content of a polar thiophene derivative 3-((2-methoxyethoxy)methyl)thiophene was interrogated to find the effect of the polar chains on the stability of the formed nanoparticles, as well as their structural, optical, electrochemical, and electrical properties. Findings indicated that incorporation of 10-20 percent of the polar side chain led to particles that are stable over a period of 42 days, with constant particle size and polydispersity, however the particles from the polymer with 30 percent polar side chain showed aggregation effects. The polymer dispersions showed a stronger solid-like behaviour in water with decreasing polar side chain content, while thin film deposition from water was found to afford globular morphologies and crystallites with more isotropic orientation compared to conventional solution-processed films. As a proof-of-principle, field-effect transistors were fabricated directly from the aqueous dispersions demonstrating that polymers with hydrophilic moieties can be processed in water without the requirement of surfactants.

摘要

在制备共轭聚合物纳米颗粒时,将低聚醚侧链引入聚合物主链有助于在无需表面活性剂或添加剂的情况下稳定聚合物在水中的分散体。研究了一系列具有不同含量极性噻吩衍生物3-((2-甲氧基乙氧基)甲基)噻吩的聚(3-己基噻吩)(P3HT)衍生物,以探究极性链对所形成纳米颗粒稳定性的影响,以及它们的结构、光学、电化学和电学性质。研究结果表明,掺入10%-20%的极性侧链会产生在42天内稳定的颗粒,粒径和多分散性恒定,然而,含有30%极性侧链的聚合物形成的颗粒表现出聚集效应。随着极性侧链含量的降低,聚合物分散体在水中表现出更强的类固体行为,与传统溶液处理的薄膜相比,从水中沉积薄膜可得到具有更各向同性取向的球状形态和微晶。作为原理验证,直接从水性分散体制备了场效应晶体管,证明了具有亲水性部分的聚合物可以在水中进行加工,而无需表面活性剂。

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