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共轭星爆硼烷树枝状大分子的迭代发散方法。

An Iterative Divergent Approach to Conjugated Starburst Borane Dendrimers.

作者信息

Rauch Florian, Endres Peter, Friedrich Alexandra, Sieh Daniel, Hähnel Martin, Krummenacher Ivo, Braunschweig Holger, Finze Maik, Ji Lei, Marder Todd B

机构信息

Institut für Anorganische Chemie and Institute for Sustainable Chemistry &, Catalysis with Boron (ICB), Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.

Frontiers Science Center for Flexible Electronics (FSCFE), Shaanxi Institute of Flexible Electronics (SIFE) &, Shaanxi Institute of Biomedical Materials and Engineering (SIBME), Northwestern Polytechnical University, 127 West Youryi Road, 710072, Xi'an, China.

出版信息

Chemistry. 2020 Oct 9;26(57):12951-12963. doi: 10.1002/chem.202001985. Epub 2020 Sep 16.

Abstract

Using a new divergent approach, conjugated triarylborane dendrimers were synthesized up to the 2 generation. The synthetic strategy consists of three steps: 1) functionalization, via iridium catalyzed C-H borylation; 2) activation, via fluorination of the generated boronate ester with K[HF ] or [N(nBu )][HF ]; and 3) expansion, via reaction of the trifluoroborate salts with aryl Grignard reagents. The concept was also shown to be viable for a convergent approach. All but one of the conjugated borane dendrimers exhibit multiple, distinct and reversible reduction potentials, making them potentially interesting materials for applications in molecular accumulators. Based on their photophysical properties, the 1 generation dendrimers exhibit good conjugation over the whole system. However, the conjugation does not increase further upon expansion to the 2 generation, but the molar extinction coefficients increase linearly with the number of triarylborane subunits, suggesting a potential application as photonic antennas.

摘要

采用一种新的发散法合成了高达第二代的共轭三芳基硼烷树枝状大分子。合成策略包括三个步骤:1)通过铱催化的C-H硼化进行官能化;2)通过用K[HF₂]或[N(nBu)₄][HF₂]对生成的硼酸酯进行氟化来活化;3)通过三氟硼酸盐与芳基格氏试剂反应进行扩链。该概念对于收敛法也被证明是可行的。除一种共轭硼烷树枝状大分子外,其他所有树枝状大分子均表现出多个、不同且可逆的还原电位,使其成为分子蓄能器应用中潜在有趣的材料。基于它们的光物理性质,第一代树枝状大分子在整个体系中表现出良好的共轭性。然而,在扩展到第二代时共轭性并未进一步增加,但摩尔消光系数随三芳基硼烷亚基数量线性增加,表明其作为光子天线的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32ea/7590090/b04d9d23dcb3/CHEM-26-12951-g008.jpg

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