Laromaine Anna, Teixidor Francesc, Kivekäs Raikko, Sillanpää Reijo, Benakki Rajae, Grüner Bohumir, Viñas Clara
Institut de Ciencia de Materials de Barcelona, Campus U.A.B., 08193, Bellaterra, Spain.
Dalton Trans. 2005 May 21(10):1785-95. doi: 10.1039/b502328a. Epub 2005 Apr 19.
The equimolar reaction of 1-SH-2-R-1,2-closo-C2B10H10(R=Me, H, Ph) with KOH in ethanol produces the thiolate species [1-S-2-R-1,2-closo-C2B10H10]-. These react with iodine to give the disulfide bridged dicluster (1-S-2-R-1,2-closo-C2B10H10)2(R=H, Me, Ph) compounds as analytically pure, white and air-stable solids in high yield. Synthesis of monothioether bridged species is synthetically more difficult. In fact three procedures have been tested to obtain the thioether bridged dicluster compounds (2-R-1,2-closo-C2B10H10)2S (R=Me, H, Ph) but only (2-Me-1,2-closo-C2B10H10)2S was successfully synthesized and characterized. Attempts to produce mixed compounds (1-R-1,2-closo-C2B10H10)S(1-R'-1,2-closo-C2B10H10), R not=R', were unsuccessful. Deboronation reaction of this dicarboranylthioether lead, depending on the reaction conditions, to monoanionic [(2-Me-1,2-closo-C2B10H10)S(8-Me-7,8-nido-C2B9H10)]- or dianionic [(8-Me-7,8-nido-C2B9H10)2S]2- sulfur bridge anions. Deboronation of carboranyl disulfides gave the corresponding dianionic [(7-S-8-R-7,8-nido-C2B9H10)2]2-(R=H, Me, Ph) species. This reaction was very dependent, however, on the reaction conditions. With slight variation of the reaction conditions, splitting of the S-S bond leading to the thiolate species with retention of the closo cluster was also found. Carboranyl disulfides (1-S-2-R-1,2-closo-C2B10H10)2(R=H, Me, Ph) do not lead to thiosulfinates R-S(O)-S-R' by oxidation with H2O2 or I2 as organic disulfides do. This behaviour is attributed to the presence of the sulfur atom directly bonded to the carbon cluster that produces electronic transfer from the filled orbitals on the sulfur atom into the cage LUMO (largely located on the cage Cc-Cc bond). This causes a depletion of electron density on the sulfur, thence impairing sulfur oxidation, and facilitating S-S breaking. Crystal structures of monothioethers (2-Me-1,2-closo-C2B10H10)2S, [NMe4][(2-Me-1,2-closo-C2B10H10)S(8-Me-7,8-nido-C2B9H10)](the first example reported in the literature of a two cluster compound incorporating the closo C2B10 and the nido[C2B9]- moieties linked by a one member spacer) and disulfides (1-S-1,2-closo-C2B10H11)2, (1-S-2-Me-1,2-closo-C2B10H10)2, (1-S-2-Ph-1,2-closo-C2B10H10)2 are reported which support the behaviour of these species.
1-SH-2-R-1,2-闭合型-C2B10H10(R = 甲基、氢、苯基)与氢氧化钾在乙醇中进行等摩尔反应生成硫醇盐物种[1-S-2-R-1,2-闭合型-C2B10H10]-。这些物种与碘反应生成二硫键桥连的双簇合物(1-S-2-R-1,2-闭合型-C2B10H10)2(R = 氢、甲基、苯基),该化合物为分析纯的白色且对空气稳定的固体,产率很高。单硫醚桥连物种的合成在合成上更具难度。实际上,已经测试了三种方法来制备硫醚桥连的双簇合物(2-R-1,2-闭合型-C2B10H10)2S(R = 甲基、氢、苯基),但仅成功合成并表征了(2-甲基-1,2-闭合型-C2B10H10)2S。尝试制备混合化合物(1-R-1,2-闭合型-C2B10H10)S(1-R'-1,2-闭合型-C2B10H10)(R≠R')未成功。这种二碳硼烷硫醚的脱硼反应,取决于反应条件,会生成单阴离子[(2-甲基-1,2-闭合型-C2B10H10)S(8-甲基-7,8-巢型-C2B9H10)]-或双阴离子[(8-甲基-7,8-巢型-C2B9H10)2S]2-硫桥阴离子。碳硼烷二硫化物的脱硼反应生成相应的双阴离子[(7-S-8-R-7,8-巢型-C2B9H10)2]2-(R = 氢、甲基、苯基)物种。然而,该反应非常依赖于反应条件。随着反应条件的轻微变化,还发现了S-S键的断裂,生成硫醇盐物种,同时保留闭合型簇。碳硼烷二硫化物(1-S-2-R-1,2-闭合型-C2B10H10)2(R = 氢、甲基、苯基)不像有机二硫化物那样通过用H2O2或I2氧化生成亚硫酰基化合物R-S(O)-S-R'。这种行为归因于直接与碳簇键合的硫原子的存在,它会导致电子从硫原子上的填充轨道转移到笼状最低未占分子轨道(主要位于笼状Cc-Cc键上)。这会导致硫上的电子密度降低,从而削弱硫的氧化,并促进S-S键的断裂。报道了单硫醚(2-甲基-1,2-闭合型-C2B10H10)2S、[NMe4][(2-甲基-1,2-闭合型-C2B10H10)S(8-甲基-7,8-巢型-C2B9H10)](文献中报道的第一个通过一个原子间隔基连接闭合型C2B10和巢型[C2B9]-部分的双簇合物的例子)和二硫化物(1-S-1,2-闭合型-C2B10H11)2、(1-S-2-甲基-1,2-闭合型-C2B10H10)2、(1-S-2-苯基-1,2-闭合型-C2B10H10)2的晶体结构,这些结构支持了这些物种的行为。