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所有非碳 B 杂环 NO 类化合物:合成、动力学与催化。

All Non-Carbon B NO Exotic Heterocycles: Synthesis, Dynamics, and Catalysis.

机构信息

Institute of Microbial Chemistry (BIKAKEN), 3-14-23 Kamiosaki, Shinagawa-ku, Tokyo, 141-0021, Japan.

出版信息

Chemistry. 2019 Mar 27;25(18):4648-4653. doi: 10.1002/chem.201900715. Epub 2019 Mar 8.

DOI:10.1002/chem.201900715
PMID:30770614
Abstract

The B NO six-membered heterocycle (1,3-dioxa-5-aza-2,4,6-triborinane=DATB), comprising three different non-carbon period 2 elements, has been recently demonstrated to be a powerful catalyst for dehydrative condensation of carboxylic acids and amines. The tedious synthesis of DATB, however, has significantly diminished its utility as a catalyst, and thus the inherent chemical properties of the ring system have remained virtually unexplored. Here, a general and facile synthetic strategy that harnesses a pyrimidine-containing scaffold for the reliable installation of boron atoms is disclosed, giving rise to a series of Pym-DATBs from inexpensive materials in a modular fashion. The identification of a soluble Pym-DATB derivative allowed for the investigation of the dynamic nature of the B NO ring system, revealing differential ring-closing and -opening behaviors depending on the medium. Readily accessible Pym-DATBs proved their utility as efficient catalysts for dehydrative amidation with broad substrate scope and functional-group tolerance, offering a general and practical catalytic alternative to reagent-driven amidation.

摘要

B NO 六元杂环(1,3-二氧杂-5-氮杂-2,4,6-三硼烷=DATB)由三个不同的非碳周期 2 元素组成,最近被证明是羧酸和胺脱水缩合的有力催化剂。然而,DATB 的繁琐合成极大地降低了其作为催化剂的实用性,因此,环体系的固有化学性质几乎没有得到探索。在这里,我们揭示了一种通用且简便的合成策略,该策略利用含有嘧啶的支架可靠地安装硼原子,从而以模块化的方式从廉价材料中得到一系列 Pym-DATB。可识别的可溶性 Pym-DATB 衍生物允许研究 B NO 环体系的动态性质,结果表明,根据介质的不同,存在不同的闭环和开环行为。易于获得的 Pym-DATB 证明了它们作为高效脱水酰胺化催化剂的实用性,具有广泛的底物范围和官能团耐受性,为试剂驱动的酰胺化提供了一种通用且实用的催化替代方案。

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