首页> 外文期刊>Journal of physical chemistry letters >Facile Synthetic Route to Atomically Thin Conductive Wires from Single-Species Molecules in One-Dimensionally Confined Space: Doped Conjugated Polymers inside Single-Walled Carbon Nanotubes
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Facile Synthetic Route to Atomically Thin Conductive Wires from Single-Species Molecules in One-Dimensionally Confined Space: Doped Conjugated Polymers inside Single-Walled Carbon Nanotubes

机译:在一维限制空间中的单物质分子中的构成合成途径,在一维限制空间中的单一分子:单壁碳纳米管内的掺杂共轭聚合物

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摘要

A facile synthetic method for doped conjugated molecules by a heating process is demonstrated. Br-terminated terthiophene precursors are encapsulated in single-walled carbon nanotubes by a vapor-phase reaction, and additional heat treatment promotes the thermal condensation of the precursors. Transmission electron microscopy observations and optical measurements show the successful synthesis of sexithiophenes and their doping (oxidation) by Br dopants generated by the condensation reaction. This study provides a new strategy for the synthesis of the doped conjugated polymers from single-species molecules by only a heating process.
机译:证明了通过加热过程掺杂掺杂共轭分子的容易合成方法。 通过气相反应将Br封端的百噻吩前体包封在单壁碳纳米管中,并且额外的热处理促进前体的热凝结。 透射电子显微镜观测和光学测量显示通过缩合反应产生的BR掺杂剂成功地合成性海苯乙烯和它们的掺杂(氧化)。 该研究提供了通过仅通过加热过程从单物质分子合成掺杂缀合聚合物的新策略。

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