Departamento de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea (ISQCH), Centro de Innovación en Química Avanzada (ORFEO-CINQA), Universidad de Zaragoza-CSIC , 50009 Zaragoza, Spain.
Departamento de Química Orgánica I, Facultad de Ciencias Químicas, Centro de Innovación en Química Avanzada (ORFEO-CINQA), Universidad Complutense de Madrid , 28040 Madrid, Spain.
Inorg Chem. 2016 May 16;55(10):5062-70. doi: 10.1021/acs.inorgchem.6b00658. Epub 2016 May 4.
An entry to mixed phosphine-osmium-NHC polyhydride complexes is described, starting from the five-coordinate hydrido-alkylidyne compounds [OsHCl(≡CPh)(IPr)(PR3)]OTf (IPr = 1,3-bis(2,6-disopropylphenyl)imidazolylidene; OTf = CF3SO3; PR3 = P(i)Pr3 (1), PPh3 (2)). The experimental procedure involves the borylation of the Os-C triple bond of 1 and 2 with NaBH4 and the subsequent alcoholysis of the borylation products OsH2Cl(η(2)-H-BCH2Ph)(IPr)(PR3) (PR3 = P(i)Pr3 (3), PPh3 (4)) or OsH2(η(2):η(2):H2BCH2Ph)(IPr)(P(i)Pr3) (5). Stirring of 3 in 2-propanol affords the five coordinate chloride-trihydride OsH3Cl(IPr)(P(i)Pr3)2 (6), which reacts with NaBH4 to give OsH3(κ(2)-H2BH2)(IPr)(P(i)Pr3) (7). This trihydride-tetrahydrideborate derivative and its PPh3 counterpart OsH3(κ(2)-H2BH2)(IPr)(PPh3) (8) can be also obtained in a one-pot procedure, starting from 1 and 2 and using methanol at -60 °C instead of 2-propanol as alcoholysis agent. The bonding situation in 7 and 8, analyzed by DFT calculations using AIM and NBO methods, resembles that found in B2H6 and contrasts with the bonding situation in the bis-σ-borane derivative 5. Stirring of 7 and 8 in 2-propanol leads to the corresponding d(2)-hexahydride derivatives OsH6(IPr)(PR3) (PR3 = P(i)Pr3 (9), PPh3 (10)), which reduce the C≡N triple bond of benzonitrile and promote the subsequent chelate-assisted ortho-CH bond activation of the resulting phenylmethanimine, to form the trihydride compounds OsH3{κ(2)-N,C-(NH═CH-C6H4)}(IPr)(PR3)2 (PR3 = P(i)Pr3 (11), PPh3 (12)), containing a stabilized orthometalated aldimine.
描述了一种进入混合膦-锇-NHC 多氢化物配合物的途径,该途径从五配位氢化物-炔基化合物[OsHCl(≡CPh)(IPr)(PR3)]OTf(IPr=1,3-双(2,6-二异丙基苯基)咪唑基二烯;OTf=CF3SO3;PR3=P(i)Pr3(1),PPh3(2))开始。实验过程包括 1 和 2 的 Os-C 三键的硼化与 NaBH4 反应,以及随后醇解硼化产物 OsH2Cl(η(2)-H-BCH2Ph)(IPr)(PR3)(PR3=P(i)Pr3(3),PPh3(4))或 OsH2(η(2):η(2):H2BCH2Ph)(IPr)(P(i)Pr3)(5)。3 在 2-丙醇中的搅拌得到五配位氯-三氢化物 OsH3Cl(IPr)(P(i)Pr3)2(6),其与 NaBH4 反应得到 OsH3(κ(2)-H2BH2)(IPr)(P(i)Pr3)(7)。该三氢化物-四氢化物硼酸盐衍生物及其 PPh3 对应物 OsH3(κ(2)-H2BH2)(IPr)(PPh3)(8)也可以通过一锅法获得,从 1 和 2 开始,使用甲醇在-60°C 作为醇解剂而不是 2-丙醇。通过使用 AIM 和 NBO 方法的 DFT 计算分析,7 和 8 的键合情况类似于 B2H6 中的情况,与双-σ-硼烷衍生物 5 的键合情况形成对比。7 和 8 在 2-丙醇中的搅拌导致相应的 d(2)-六氢化物衍生物 OsH6(IPr)(PR3)(PR3=P(i)Pr3(9),PPh3(10)),其还原苯甲腈的 C≡N 三键,并促进形成的苯甲亚胺的随后的螯合辅助邻-CH 键活化,形成三氢化物化合物 OsH3{κ(2)-N,C-(NH═CH-C6H4)}(IPr)(PR3)2(PR3=P(i)Pr3(11),PPh3(12)),含有稳定的配位亚胺。