Kabytaev Kuanysh Z, Safronov Alexander V, Sevryugina Yulia V, Barnes Charles L, Jalisatgi Satish S, Hawthorne M Frederick
†International Institute of Nano and Molecular Medicine, School of Medicine and ‡Department of Chemistry, University of Missouri, Columbia, Missouri 65211, United States.
Inorg Chem. 2015 Apr 20;54(8):4143-50. doi: 10.1021/acs.inorgchem.5b00414. Epub 2015 Mar 27.
A number of monosubstituted n-(triphenylphosphonio)-7,8-dicarba-nido-undecaboranes (2a, n = 1; 2b, n = 3; 2c, n = 5; 2d, n = 9) were prepared via a cross-coupling reaction between the tetrabutylammonium iodo-7,8-dicarba-nido-undecaborates (1a-d) and PPh3 in the presence of a Pd(PPh3)4 catalyst. The substitution rate was found to depend on the iodine position in the carborane cage. Under similar conditions, the reaction of 5,6-diiodo- (3) and 9,11-diiodo-7,8-dicarba-nido-undecaborate (5) anions exclusively yielded the monosubstitution products 5-iodo-6-(triphenylphosphonio)-7,8-dicarba-nido-undecaborane (4) and 9-iodo-11-(triphenylphosphonio)-7,8-dicarba-nido-undecaborane (6), respectively. The reaction of tetrabutylammonium 6,9-diiodo-7,8-dicarba-nido-undecaborate (7) exclusively produced the phosphine substitution product in the open face of the nido-carborane, 6-iodo-9-triphenylphosphonio-7,8-dicarba-nido-undecaborane (8). The addition of a base (Cs2CO3, NaH) to the reactions of 3 and 5 with PPh3 afforded the corresponding bis(triphenylphosphonio)-7,8-dicarba-nido-undecaboranes, 9 and 10. Compound 10 was also prepared from 6 using the general procedure. The reaction of the triiodocarborane tetrabutylammonium 5,6,9-triiodo-7,8-dicarba-nido-undecaborate (11) with excess PPh3 in the presence of Cs2CO3 and Pd(PPh3)4 only produced neutral 5-iodo-6,9-bis(triphenylphosphonio)-7,8-dicarba-nido-undecaborane (12); no positively charged tris(phosphonio) species formed. The compositions of all prepared compounds were determined by multinuclear NMR spectroscopy and high-resolution mass spectrometry. The structures of compounds 2c, 6, 8, 9, and 12 were established by the X-ray diffraction analysis of single crystals.
通过四丁基碘化铵-7,8-二碳-巢式-十一硼酸盐(1a - d)与三苯基膦(PPh₃)在钯(PPh₃)₄催化剂存在下的交叉偶联反应,制备了一系列单取代的N -(三苯基膦鎓)-7,8 - 二碳-巢式-十一硼烷(2a,n = 1;2b,n = 3;2c,n = 5;2d,n = 9)。发现取代速率取决于碳硼烷笼中碘的位置。在相似条件下,5,6 - 二碘-(3)和9,11 - 二碘-7,8 - 二碳-巢式-十一硼酸盐(5)阴离子的反应分别仅生成单取代产物5 - 碘-6 -(三苯基膦鎓)-7,8 - 二碳-巢式-十一硼烷(4)和9 - 碘-11 -(三苯基膦鎓)-7,8 - 二碳-巢式-十一硼烷(6)。四丁基铵6,9 - 二碘-7,8 - 二碳-巢式-十一硼酸盐(7)的反应仅在巢式碳硼烷的开口面生成膦取代产物6 - 碘-9 - 三苯基膦鎓-7,8 - 二碳-巢式-十一硼烷(8)。在3和5与PPh₃的反应中加入碱(碳酸铯、氢化钠)得到相应的双(三苯基膦鎓)-7,8 - 二碳-巢式-十一硼烷,9和10。化合物10也使用通用方法由6制备。三碘碳硼烷四丁基铵5,6,9 - 三碘-7,8 - 二碳-巢式-十一硼酸盐(11)在碳酸铯和钯(PPh₃)₄存在下与过量PPh₃反应仅生成中性的5 - 碘-6,9 - 双(三苯基膦鎓)-7,8 - 二碳-巢式-十一硼烷(12);没有形成带正电荷的三(膦鎓)物种。所有制备化合物的组成通过多核核磁共振光谱和高分辨率质谱测定。化合物2c、6、8、9和12的结构通过单晶X射线衍射分析确定。