Klos Michael A H, González-García Lola, Kraus Tobias
INM─Leibniz Institute for New Materials, Campus D2 2, 66123 Saarbrücken, Germany.
Saarland University, Colloid and Interface Chemistry, Campus D2 2, 66123 Saarbrücken, Germany.
ACS Appl Mater Interfaces. 2024 Jun 19;16(24):31576-31585. doi: 10.1021/acsami.4c04692. Epub 2024 Jun 10.
Hybrid core-shell nanoparticles with metal cores and conductive polymer shells yield materials that are sinter-free and highly conductive but mechanically weak. Conventional composites of such nanoparticles are electrically insulating. Here, we introduce microscale phase-separated nanocomposites of hybrid gold-PEDOT:PPS particles in insulating poly(vinyl alcohol) (PVA). They combine electrical conductivities of up to 2.1 × 10 S/m at 10 vol % PVA with increased mechanical adhesion on polyethylene terephthalate and glass substrates. We studied the effects of the PVA molecular weight, hydrolyzation degree, and volume fraction. Composites with 10 vol % highly hydrolyzed PVA at a of 89-98 kDa had the highest conductivities and stabilities; highly hydrolyzed PVA even increased the conductivity of the hybrid particle layers. We propose the formation of hydrogen bonds between PVA and PEDOT:PSS that lead to demixing and the formation of stable, structured composites. Finally, we demonstrated the inkjet-printability of inks containing PVA in water with viscosities of 1.6-2.0 Pa s at 50.1 s and prepared bending-resistant electrical leads.
具有金属核和导电聚合物壳的核壳杂化纳米颗粒可产生无需烧结且导电性高但机械性能较弱的材料。此类纳米颗粒的传统复合材料是电绝缘的。在此,我们介绍了绝缘聚乙烯醇(PVA)中杂化金 - PEDOT:PSS颗粒的微观相分离纳米复合材料。它们在10体积%的PVA含量下,电导率高达2.1×10 S/m,同时在聚对苯二甲酸乙二酯和玻璃基板上的机械附着力增强。我们研究了PVA分子量、水解度和体积分数的影响。在89 - 98 kDa的分子量下,含有10体积%高度水解PVA的复合材料具有最高的电导率和稳定性;高度水解的PVA甚至提高了杂化颗粒层的电导率。我们提出PVA与PEDOT:PSS之间形成氢键,导致相分离并形成稳定的结构化复合材料。最后,我们展示了含PVA的水性油墨在50.1 s时粘度为1.6 - 2.0 Pa s的喷墨打印性,并制备了抗弯曲的电线。