B(C6F5)3-Catalyzed Silation of Alcohols:  A Mild, General Method for Synthesis of Silyl Ethers

化学 硅烷 硼烷 硅烷化 催化作用 氢化物 硅烷 药物化学 有机化学 路易斯酸
作者
James M. Blackwell,Katherine Foster,Victoria Beck,Warren E. Piers
出处
期刊:Journal of Organic Chemistry [American Chemical Society]
卷期号:64 (13): 4887-4892 被引量:309
标识
DOI:10.1021/jo9903003
摘要

The commercially available borane tris(pentafluorophenyl)borane, B(C(6)F(5))(3), is an effective catalyst for the dehydrogenative silation of alcohols using a variety of silanes, R(3)SiH, R(2)SiH(2), and R(2)R'SiH. Generally, the reactions occur in a convenient time frame at room temperature using 2 mol % of the borane and are clean and high yielding, with dihydrogen as the only byproduct. Primary aliphatic alcohols are silated cleanly but slowly, with reaction times ranging from 20 to 144 h. Faster reaction times can be achieved by increasing the catalyst loading to 8 mol % or by heating the reaction to approximately 60 degrees C. Secondary and tertiary alcohols react more rapidly, with most reactions being complete in 0.5-2 h. The reaction is tolerant of many functional groups including C=C, C&tbd1;C, -Br, aliphatic ketones, C(O)OR, lactones, furans, OBn, OMe, and NO(2); examples of each are given. Using the phenolic substrate 2,4,6-trimethylphenol, a number of different silanes were tested. Only the most bulky silanes (Bn(3)SiH and Pr(i)()(3)SiH) were not reactive under these conditions. The selectivity of the silation reactions are roughly governed by the relative basicity of the alcohols (and other functions in the molecule) with more basic groups being selectively silated. These observations are rationalized on the basis of a mechanism that invokes borane activation of the silane by hydride abstraction. The resulting intermediate silylium/hydridoborate ion pair then reacts with alcohols to give the observed silyl ether and dihydrogen products.
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