Institute of Inorganic Chemistry of Czech Academy of Sciences, 25068 Řež, Czech Republic.
Department of General and Inorganic Chemistry, Faculty of Chemical Technology, University of Pardubice, Studentská 95, 53210 Pardubice, Czech Republic.
Molecules. 2020 Feb 13;25(4):814. doi: 10.3390/molecules25040814.
Ring cleavage of cyclic ether substituents attached to a boron cage via an oxonium oxygen atom are amongst the most versatile methods for conjoining boron -cages with organic functional groups. Here we focus on much less tackled chemistry of the 11-vertex zwitterionic compound [10-(-(CH-CH)O)--7,8-CBH] (), which is the only known representative of cyclic ether substitution at -cages, and explore the scope for the use of this zwitterion in reactions with various types of nucleophiles including bifunctional ones. Most of the nitrogen, oxygen, halogen, and sulphur nucleophiles studied react via nucleophilic substitution at the C1 atom of the dioxane ring, followed by its cleavage that produces six atom chain between the cage and the respective organic moiety. We also report the differences in reactivity of this -cage system with the simplest oxygen nucleophile, i.e., OH. With compound , reaction proceeds in two possible directions, either via typical ring cleavage, or by replacement of the whole dioxane ring with -OH at higher temperatures. Furthermore, an easy deprotonation of the hydrogen bridge in was observed that proceeds even in diluted aqueous KOH. We believe this knowledge can be further applied in the design of functional molecules, materials, and drugs.
通过氧鎓氧原子将环状醚取代基连接到硼笼上的环裂解是将硼笼与有机官能团连接的最通用的方法之一。在这里,我们专注于研究较少的 11 顶点两性离子化合物 [10-(-(CH-CH)O)--7,8-CBH] ()的化学性质,它是唯一已知的环状醚取代在硼笼上的代表,并且探索了这种两性离子在与各种类型的亲核试剂(包括双功能亲核试剂)反应中的用途。我们研究的大多数氮、氧、卤素和硫亲核试剂都通过二氧戊环 C1 原子的亲核取代反应,然后通过其裂解生成笼和各自有机部分之间的六原子链。我们还报告了该 -笼系统与最简单的氧亲核试剂,即 OH 的反应性差异。对于化合物 ,反应可以通过两种可能的方向进行,要么是通过典型的环裂解,要么是在较高温度下用 -OH 取代整个二氧戊环。此外,我们观察到在较稀的 KOH 水溶液中, 中氢键的易去质子化,即使在较稀的 KOH 水溶液中也能进行。我们相信,这些知识可以进一步应用于功能分子、材料和药物的设计。