Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, USA.
J Am Chem Soc. 2010 Apr 7;132(13):4946-53. doi: 10.1021/ja100605m.
Trialkylsilylium cation equivalents partnered with halogenated carborane anions (such as Et(3)Si[HCB(11)H(5)Cl(6)]) function as efficient and long-lived catalysts for hydrodehalogenation of C-F, C-Cl, and C-Br bonds with trialkylsilanes as stoichiometric reagents. Only C(sp(3))-halogen bonds undergo this reaction. The range of C-F bond-containing substrates that participate in this reaction is quite broad and includes simple alkyl fluorides, benzotrifluorides, and compounds with perfluoroalkyl groups attached to an aliphatic chain. However, CF(4) has proven immune to this reaction. Hydrodechlorination was carried out with a series of alkyl chlorides and benzotrichlorides, and hydrodebromination was studied only with primary alkyl bromide substrates. Competitive experiments established a pronounced kinetic preference of the catalytic system for activation of a carbon-halogen bond of a lighter halide in primary alkyl halides. On the contrary, hydrodechlorination of C(6)F(5)CCl(3) proceeded much faster than hydrodefluorination of C(6)F(5)CF(3) in one-pot experiments. A solid-state structure of Et(3)Si[HCB(11)H(5)Cl(6)] was determined by X-ray diffraction methods.
三烷基硅阳离子等价物与卤代碳硼烷阴离子(如 Et(3)Si[HCB(11)H(5)Cl(6)]) 结合,作为高效且长寿命的催化剂,可用于三烷基硅烷作为化学计量试剂的 C-F、C-Cl 和 C-Br 键的氢卤化反应。只有 C(sp(3))-卤键发生此反应。参与此反应的含 C-F 键的底物范围相当广泛,包括简单的烷基氟化物、苯并三氟化物以及连接有全氟烷基的脂肪链化合物。然而,CF(4) 已被证明对此反应具有抗性。进行了一系列烷基氯化物和苯三氯化物的氢脱氯反应,并且仅对伯烷基溴化物底物进行了氢脱溴反应。竞争实验确立了催化体系对伯烷基卤化物中较轻卤化物的碳-卤键活化的明显动力学偏好。相反,在一锅实验中,C(6)F(5)CCl(3)的 C-Cl 氢脱除速度远快于 C(6)F(5)CF(3)的 C-F 氢脱除速度。通过 X 射线衍射方法确定了 Et(3)Si[HCB(11)H(5)Cl(6)]的固态结构。