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首页> 外文期刊>Advanced Functional Materials >Sequence-Independent Synthesis of π-conjugated Arylenevinylene Oligomers using Bifunctional Thiophene Monomers
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Sequence-Independent Synthesis of π-conjugated Arylenevinylene Oligomers using Bifunctional Thiophene Monomers

机译:使用双功能噻吩单体的π-共轭亚芳基亚乙烯基低聚物的序列独立合成

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摘要

Sequence-independent or "click" chemistry is applied for the preparation of a series of novel and structurally similar π-conjugated oligomers. The new oligomers are prepared using Wittig-Horner chemistry from bifunctional building blocks that can be interconnected to one another at any desired sequence. The bifunctional building blocks consist of aromatic skeletons with acetal protected aldehyde groups on one side and a phosphonic acid diethyl ester group para to the aldehyde functionality. The first step in the arylenevinylene formation is a Wittig-Horner coupling of a functionalized aldehyde with the methyl phospho nate ester ylide of a bifunctional monomer. A stepwise protection-deprotection process is applied for the preparation of structurally similar π-conjugated oligo phenylene vinylenes. New di-, tri-, penta-, and hepta-phenylenevinylenes are prepared and characterized. Selected penta-arylenevinylenes are incorporated as the semiconductor channel in organic field-effect transistors.
机译:序列无关或“点击”化学用于制备一系列新颖的且结构相似的π-共轭低聚物。新的低聚物是使用Wittig-Horner化学方法从双功能结构单元制备的,该双功能结构单元可以按任何所需顺序相互连接。双功能结构单元由在一侧具有缩醛保护的醛基的芳族骨架和相对于醛官能度的膦酸二乙酯基组成。形成亚芳基亚乙烯基的第一步是官能化的醛与双官能单体的甲基膦酸酯酯叶立德的维蒂希-霍纳偶联。采用逐步保护-脱保护方法来制备结构相似的π-共轭的低聚亚苯基亚乙烯基。制备并表征了新的二,三,五和七亚苯基亚乙烯基。选定的五亚芳基亚乙烯基被纳入有机场效应晶体管中作为半导体通道。

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  • 来源
    《Advanced Functional Materials 》 |2012年第7期| p.1489-1501| 共13页
  • 作者单位

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

    Nanoelectronics Center Department of Electrical Engineering Technion- Israel Institute of Technology Technion City 32000 Haifa, Israel;

    Nanoelectronics Center Department of Electrical Engineering Technion- Israel Institute of Technology Technion City 32000 Haifa, Israel;

    Schulich Faculty of Chemistry Technion- Israel Institute of Technology Technion City, 32000 Haifa, Israel;

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