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Development of Hierarchical Polymer@Pd Nanowire-Network: Synthesis and Application as Highly Active Recyclable Catalyst and Printable Conductive Ink

机译:多层聚合物@Pd纳米线网络的开发:高活性可回收催化剂和可印刷导电油墨的合成与应用

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Abstract A facile one-pot approach for preparing hierarchical nanowire-networks of hollow polymer@Pd nanospheres is reported. First, polymer@Pd hollow nanospheres were produced through metal-complexation-induced phase separation with functionalized graft copolymers and subsequent self-assembly of PdNPs. The nanospheres hierarchically assembled into the nanowire-network upon drying. The Pd nanowire-network served as an active catalyst for Mizoroki?¢????Heck and Suzuki?¢????Miyaura coupling reactions. As low as 500 ????mol % Pd was sufficient for quantitative reactions, and the origin of the high activity is ascribed to the highly active sites originating from high-index facets, kinks, and coalesced structures. The catalyst can be recycled via simple filtration and washing, maintaining its high activity owing to the micrometer-sized hierarchical structure of the nanomaterial. The polymer@Pd nanosphere also served as a printable conductive ink for a translucent grid pattern with excellent horizontal conductivity (7.5????10 5 S m ?¢????1 ).
机译:摘要报道了一种简便的一锅法制备空心聚合物@Pd纳米球的分层纳米线网络。首先,通过功能化接枝共聚物的金属络合诱导的相分离以及随后的PdNPs自组装,制备了聚合物@Pd中空纳米球。干燥后,纳米球分层组装成纳米线网络。 Pd纳米线网络用作Mizoroki?Heck和Suzuki?Miyaura偶联反应的活性催化剂。低至500 mol%的Pd足以用于定量反应,并且高活性的起源归因于源自高折射率小面,扭结和聚结结构的高活性部位。可以通过简单的过滤和洗涤来回收催化剂,由于纳米材料的微米级分级结构而保持其高活性。该聚合物@Pd纳米球还用作具有优异水平导电性(7.5×10 5 S m×φ-1-1)的半透明网格图案的可印刷导电油墨。

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