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炔基官能化 1,3,2-二硫杂硼烷的杂环卡宾加合物。

-Heterocyclic Carbene Adducts of Alkynyl Functionalized 1,3,2-Dithioborolanes.

机构信息

Department of Inorganic and Analytical Chemistry, Faculty of Life Sciences, Technische Universität Braunschweig, Hagenring 30, 38106 Braunschweig, Germany.

出版信息

Molecules. 2019 Apr 30;24(9):1690. doi: 10.3390/molecules24091690.

Abstract

Alkynyl functionalized boron compounds are versatile intermediates in the areas of medicinal chemistry, materials science, and optical materials. In particular, alkynyl boronate esters [R-C≡C-B(OR)] are of interest since they provide reactivity at both the alkyne entity, with retention of the B-C bond or alkyne transfer to electrophilic substrates with scission of the latter. The boron atom is commonly well stabilized due to (i) the extraordinary strength of two B-O bonds, and (ii) the chelate effect exerted by a bifunctional alcohol. We reasoned that the replacement of a B-O for a B-S bond would lead to higher reactivity and post-functionalization in the resulting alkynyl boronate thioesters [R-C≡C-B(SX)]. Access to this poorly investigated class of compounds starts form chloro dithioborolane -Cl-B(SCH) as a representative example. Whereas syntheses of three coordinate alkynyl boronate thioesters [R-C≡C-B(SX)] proved to be ineffective, the reactions of NHC-adducts (NHC = -heterocyclic carbene) of -Cl-B(SCH) afforded the alkyne substituted thioboronate esters in good yield. The products NHC-B(SCH)(C≡C-R) are remarkably stable towards water and air, which suggests their use as boron-based building blocks for applications akin to oxygen-based boronate esters.

摘要

炔基功能化硼化合物在药物化学、材料科学和光学材料等领域是多功能的中间体。特别是炔基硼酸酯[R-C≡C-B(OR)]引起了人们的兴趣,因为它们在炔烃实体上提供了反应性,同时保留了 B-C 键,或者将炔烃转移到亲电底物上,同时后者的键断裂。硼原子通常由于(i)两个 B-O 键的非凡强度,和(ii)双官能醇施加的螯合效应而得到很好的稳定。我们推断,用 B-S 键代替 B-O 键会导致在所得的炔基硼酸硫酯[R-C≡C-B(SX)]中产生更高的反应性和后官能化。这种研究较少的化合物类别的获得始于氯二硫代硼烷-Cl-B(SCH)作为代表性实例。尽管合成三配位炔基硼酸硫酯[R-C≡C-B(SX)]被证明是无效的,但 NHC-加合物(NHC = -杂环卡宾)的反应-Cl-B(SCH)以良好的产率得到了取代炔基的硫代硼酸酯。产物 NHC-B(SCH)(C≡C-R)对水和空气非常稳定,这表明它们可用作硼基构建块,用于类似于氧代硼酸酯的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0245/6539715/f45fe7a5786f/molecules-24-01690-sch001.jpg

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