首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Formation of Difluorosulfane Complexes of the Third Row Transition Metals by Sulfur-to-Metal Fluorine Migration in Trifluorosulfane Metal Complexes: The Anomaly of Trifluorosulfane Iridium Tricarbonyl
【24h】

Formation of Difluorosulfane Complexes of the Third Row Transition Metals by Sulfur-to-Metal Fluorine Migration in Trifluorosulfane Metal Complexes: The Anomaly of Trifluorosulfane Iridium Tricarbonyl

机译:在三氟硫金属配合物中硫到金属的氟迁移形成第三行过渡金属的二氟硫配合物:三氟硫铱三羰基的异常

获取原文
获取原文并翻译 | 示例
           

摘要

The stability of the experimentally known complex (Et3P)(2)Ir(CO)(Cl)(F)(SF3) of the third row transition metal iridium suggests that SF3 complexes of the third row transition metals might be viable species in contrast to the SF3 complexes of the first row transition metals previously studied by theoretical methods. However, the metal complexes [M](SF3) ([M] = Ta(CO)(5), Re(CO)(4), CpW(CO)(2), CpOs(CO), and CpPt) containing three-electron donor tetrahedral SF3 ligands are thermodynamically disfavored relative to the isomeric [M](SF2)(F) derivatives with predicted energy differences ranging from -19 to -44 kcal/mol. The one exception is an Ir(SF3)(CO)(3) isomer containing a one-electron donor pseudo-square-pyramidal SF3 ligand having essentially the same energy as the lowest energy Ir(SF2)(F)(CO)(3) isomer. This, as well as the stability of the known (Et3P)(2)Ir(CO)(Cl)(F)(SF3), suggests that metal complexes containing one-electron donor pseudo-square-pyramidal SF3 ligands might be viable synthetic objectives in contrast to those containing three-electron donor tetrahedral SF3 ligands. The [M](SF2)(F) derivatives formed by sulfur-to-metal fluorine migration from isomeric [M](SF3) complexes are predicted to be viable toward SF2 dissociation to give the corresponding [M](F) derivatives. This suggests the possibility of synthesizing metal complexes of the difluorosulfane (SF2) ligand via the corresponding metal trifluorosulfane complexes with the SF3+ cation as the ultimate source of the SF2 ligand. Such a synthetic approach bypasses the need for the very unstable SF2 as a synthetic reagent.
机译:实验上已知的第三排过渡金属铱络合物(Et3P)(2)Ir(CO)(Cl)(F)(SF3)的稳​​定性表明,第三排过渡金属的SF3络合物可能是可行的物种,与以前通过理论方法研究过的第一排过渡金属的SF3配合物。但是,金属配合物[M](SF3)([M] = Ta(CO)(5),Re(CO)(4),CpW(CO)(2),CpOs(CO)和CpPt)包含三种-电子给体四面体SF3配体相对于异构体[M](SF2)(F)衍生物在热力学上不利,其预测的能量差异在-19至-44 kcal / mol之间。一个例外是Ir(SF3)(CO)(3)异构体,该异构体包含单电子供体伪正方形金字塔SF3配体,其能量与最低能量Ir(SF2)(F)(CO)(3)基本相同)异构体。这以及已知的(Et3P)(2)Ir(CO)(Cl)(F)(SF3)的稳​​定性表明,含单电子供体假正方形金字塔形SF3配体的金属配合物可能是可行的与包含三电子给体四面体SF3配体的目标相反。据预测,由[M](SF3)异构体从硫到金属的氟迁移形成的[M](SF2)(F)衍生物可实现SF2分解,从而生成相应的[M](F)衍生物。这表明可能通过相应的金属三氟硫醚配合物以SF3 +阳离子作为SF2配体的最终来源来合成二氟硫醚(SF2)配体的金属配合物。这种合成方法绕开了对于非常不稳定的SF 2作为合成试剂的需求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号