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萘基和咔唑基单体的分子设计用于通过协同催化氢芳基化加成聚合反应进行聚(芳基乙炔)的区域特异性合成。

Molecular Design of Naphthalene- and Carbazole-Based Monomers for Regiospecific Synthesis of Poly(arylenevinylene)s via Co-Catalyzed Hydroarylation Polyaddition.

机构信息

Institute of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8573, Japan.

Tsukuba Research Center for Energy Materials Science (TREMS), Institute of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8573, Japan.

出版信息

Macromol Rapid Commun. 2024 Aug;45(16):e2400168. doi: 10.1002/marc.202400168. Epub 2024 Apr 21.

DOI:10.1002/marc.202400168
PMID:38644552
Abstract

This study focuses on the development of regiospecific hydroarylation polyaddition of naphthalene- and carbazole-based monomers with diynes under mild reaction conditions at room temperature. A 1-pyrazole substituent serves as an appropriate directing group for a Co-catalyst to efficiently activate the C-H bonds of generally inactive six-membered aromatic hydrocarbons. The 1-pyrazole groups in 2,6-di(1-pyrazolyl)naphthalene adopt planar conformations and act as directing groups, resulting in a smooth hydroarylation reaction. In contrast, the reaction with 1,5-di(1-pyrazolyl)naphthalene do not proceed. The polyaddition reaction of 2,6-di(1-pyrazolyl)naphthalene selectively proceeds at 3,7-positions under mild reaction conditions at 30 °C, and yields corresponding poly(arylenevinylene) (PAV) with high molecular weight. This molecular design is also applicable to the hydroarylation polyaddition of carbazole; the polyaddition reaction of 9-(2-ethylhexyl)-3,6-di(1-pyrazolyl)carbazole selectively occurred at 2,7-positions. The optical and electronic properties of the synthesized compounds are evaluated. The obtained PAVs serve as an emitting material in organic light-emitting diode (OLED). This study aims to develop a Co-catalyzed hydroarylation polyaddition via C-H activation of generally inactive polyaromatic hydrocarbons (PAHs) under mild conditions.

摘要

本研究专注于在温和的室温反应条件下,通过萘基和咔唑基单体与二炔的区域选择性氢芳基化加成反应来开发。1-吡唑取代基作为辅助配体可有效激活通常不活泼的六元芳环的 C-H 键,从而促进 Co 催化剂的活化。2,6-二(1-吡唑基)萘中的 1-吡唑基团采用平面构象并充当导向基团,从而使氢芳基化反应顺利进行。相比之下,1,5-二(1-吡唑基)萘的反应则无法进行。在温和的 30°C 反应条件下,2,6-二(1-吡唑基)萘的聚加成反应选择性地在 3,7-位进行,生成具有高分子量的相应聚(芳基乙炔)(PAV)。这种分子设计也适用于咔唑的氢芳基化加成反应;9-(2-乙基己基)-3,6-二(1-吡唑基)咔唑的聚加成反应选择性地在 2,7-位发生。对合成化合物的光学和电子性能进行了评估。所得 PAV 可用作有机发光二极管(OLED)中的发光材料。本研究旨在开发一种在温和条件下通过通常不活泼的多环芳烃(PAHs)的 C-H 活化作用来实现 Co 催化的氢芳基化加成反应。

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Molecular Design of Naphthalene- and Carbazole-Based Monomers for Regiospecific Synthesis of Poly(arylenevinylene)s via Co-Catalyzed Hydroarylation Polyaddition.萘基和咔唑基单体的分子设计用于通过协同催化氢芳基化加成聚合反应进行聚(芳基乙炔)的区域特异性合成。
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