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Gold nanorods with conjugated polymer ligands: sintering-free conductive inks for printed electronics

机译:具有共轭聚合物配体的金纳米棒:用于印刷电子产品的免烧结导电油墨

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Metal-based nanoparticle inks for printed electronics usually require sintering to improve the poor electron transport at particle–particle interfaces. The ligands required for colloidal stability act as insulating barriers and must be removed in a post-deposition sintering step. This complicates the fabrication process and makes it incompatible with many flexible substrates. Here, we bind a conjugated, electrically conductive polymer on gold nanorods (AuNRs) as a ligand. The polymer, poly[2-(3-thienyl)-ethyloxy-4-butylsulfonate] (PTEBS), provides colloidal stability and good electron transport properties to stable, sintering-free inks. We confirm that the polymer binds strongly through a multidentate binding motif and provides superior colloidal stability in polar solvents over months by IR and Raman spectrometry and zeta potential measurements. We demonstrate that the developed ligand exchange protocol is directly applicable to other polythiophenes such as poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS). Films of AuNRs coated with above polymers reached conductivities directly after deposition comparable to conventional metal inks after ligand removal and retained their conductivity for at least one year when stored under ambient conditions.
机译:用于印刷电子产品的金属基纳米粒子油墨通常需要进行烧结,以改善粒子-粒子界面处不良的电子传输。胶体稳定性所需的配体充当绝缘屏障,并且必须在沉积后的烧结步骤中除去。这使制造过程复杂化并且使其与许多柔性基板不兼容。在这里,我们将共轭的导电聚合物结合在金纳米棒(AuNRs)上作为配体。聚[2-(3-噻吩基)-乙氧基-4-丁基磺酸盐](PTEBS)聚合物为稳定的免烧结油墨提供了胶体稳定性和良好的电子传输性能。我们证实该聚合物通过多齿结合基序牢固结合,并通过IR和拉曼光谱法和zeta电位测量在极性溶剂中提供了长达数月的优异胶体稳定性。我们证明,开发的配体交换协议可直接应用于其他聚噻吩,例如聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)。与传统的金属油墨相比,涂有上述聚合物的AuNRs薄膜在沉积后直接达到了电导率,与去除配体后的传统金属油墨相当,并且在环境条件下保存至少一年的电导率。

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