...
首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >SYNTHESIS AND STRUCTURAL CHARACTERIZATION OF LITHIUM THIOLATES - DEPENDENCE OF ASSOCIATION AND AGGREGATION ON DONOR HAPTICITY AND LIGAND SIZE AND SYNTHESIS OF THE FIRST TRIMERIC LITHIUM THIOLATE [LI(THF)SR](3) AND THE SOLVENT-SEPARATED ION PAIR [LI(1
【24h】

SYNTHESIS AND STRUCTURAL CHARACTERIZATION OF LITHIUM THIOLATES - DEPENDENCE OF ASSOCIATION AND AGGREGATION ON DONOR HAPTICITY AND LIGAND SIZE AND SYNTHESIS OF THE FIRST TRIMERIC LITHIUM THIOLATE [LI(THF)SR](3) AND THE SOLVENT-SEPARATED ION PAIR [LI(1

机译:硫氰酸锂的合成和结构表征-缔合和聚集对供体触觉和配体尺寸的依赖以及第一三聚硫氰酸锂[LI(THF)SR](3)和溶剂分离的离子对[LI]的合成

获取原文
获取原文并翻译 | 示例
           

摘要

The synthesis and structural characterization of several lithium thiolates are reported. Formation of discrete species can be achieved by careful variation of ligand size and donor hapticity, as exemplified by the monomeric formulation of Li(PMDTA)STrityl (PMDTA = N,N,N',N '',N ''-pentamethyldiethylenetriame, Trityl = CPh(3)), 1, and Li(PMDTA)STrip, 2 (Trip = 2,4,6-iPr(3)C(6)H(2)), versus the dimeric species [Li(THF)(2)STrityl](2), 3, and [Li(TMEDA)STrip](2), 4 (TMEDA = N,N,N '',N ''-tetramethylethylenediamine). By control of the stoichiometry of the donor, the first trimeric lithium thiolate [Li(THF)SMes*](3), 5 (Mes* = 2,4,6-tBu(3)C(6)H(2)), exhibiting a six-membered ring system and rare three-coordinate lithium centers, becomes available. In contrast, use of a crown ether leads to the isolation of the monomeric contact ion pair Li(12-crown-4)STrityl, 6, while employing the cumbersome-SMes* ligand allows for the isolation of the first solvent-separated lithium thiolate [Li(12-crown-4)(2)][SMes*], 7. All compounds were prepared by reacting the respective thiols with nBuLi in the presence of various donor adjuncts. The target molecules were characterized using H-1 NMR and IR spectroscopy and melting point criteria. Crystal structure analysis was employed to determine solid state structures. Crystal data are as follows. 1: Cu K alpha (lambda = 1.541 78 Angstrom) at 130 K, a = 12.152(3) Angstrom, b = 15.260(3) Angstrom, c = 14.764(5) Angstrom, beta = 106.90(2)degrees, V = 2619.6(12) Angstrom(3), Z = 4, monoclinic, space group P2(1)/c, 2526 reflections (I > 2 sigma(I)), R = 0.064. 2: Cu K alpha (lambda = 1.541 78 Angstrom) at 228 K, a = 15.805(7) Angstrom, b = 9.206(4) Angstrom, c = 18.923(7) Angstrom, beta = 99.74(3)degrees, V = 2714(2) Angstrom(3), Z = 4, monoclinic, space group P2(1), 2047 reflections (I > 2 sigma(I)), R = 0.085. 3: Mo K alpha (lambda = 0.710 73 Angstrom) at 213 K, a = 13.141(3) Angstrom, b = 12.381(2) Angstrom, c = 14.664(3) Angstrom, beta = 94.84(3)degrees, V = 2377.3(8) Angstrom(3), Z = 2, monoclinic, space group P2(1), 2622 reflections (I > 2 sigma(I)), R = 0.052. 4: Cu K alpha (lambda = 1.541 78 Angstrom) at 130 K, a = 18.906(4) Angstrom, b = 9.516(2) Angstrom, c = 25.617(5) Angstrom, beta = 92.75(3)degrees, V = 4603(2) Angstrom(3), Z = 4, monoclinic, space group I2/a, 2390 reflections (I > 2 sigma(I)), R = 0.067. 5: Mo K alpha (lambda = 0.710 73 Angstrom) at 213 K, a = 9.991(2) Angstrom, b = 17.934(4) Angstrom, c = 20.314(4) Angstrom, alpha = 83.36(3)degrees, beta = 76.74(3)degrees, gamma = 76.72(3)degrees, V = 3440.4(12) Angstrom(3), Z = 2, triclinic, space group P1, 6397 reflections (I > 2.5 sigma(I)), R = 0.663. 6: Mo K alpha (lambda = 0.710 73 Angstrom) at 213 K, a = 10.542(2) Angstrom, b = 12.821(3) Angstrom, c = 18.729(4) Angstrom, beta = 102.22(3)degrees, V = 2474.0(9) Angstrom(3), Z = 4, monoclinic, space group P2(1)/c, 4206 reflections (I > 2 sigma(I)), R = 0.086. 7: Mo K alpha (lambda = 0.710 73 Angstrom) at 213 K, a = 10.134(2) Angstrom, b = 19.800(4) Angstrom, c = 18.423(4) Angstrom, beta = 93.15(3)degrees, V = 3691.0(13) Angstrom(3), Z = 4, monoclinic, space group P2(1), 4088 reflections (I > 2 sigma(I)), R = 0.092. [References: 43]
机译:报道了几种硫醇锂的合成和结构表征。 Li(PMDTA)STrityl(PMDTA = N,N,N',N'',N''-N''-五甲基二乙烯三胺,Trityl)的单体配方可以证明,通过仔细改变配体大小和施主触觉可以实现离散物种的形成。 = CPh(3))1和Li(PMDTA)STrip,2(Trip = 2,4,6-iPr(3)C(6)H(2)),与二聚体[Li(THF)( 2)STrityl](2),3和[Li(TMEDA)STrip](2),4(TMEDA = N,N,N'',N''-四甲基乙二胺)。通过控制供体的化学计量,第一个三聚体硫醇锂[Li(THF)SMes *](3),5(Mes * = 2,4,6-tBu(3)C(6)H(2))提供六元环系统和稀有的三坐标锂中心。相反,使用冠醚会导致单体接触离子对Li(12-crown-4)STrityl,6的分离,而使用笨重的SMes *配体则可以分离出第一个溶剂分离的硫醇锂[Li(12-crown-4)(2)] [SMes *],7.所有化合物都是通过在各种供体助剂存在下使各自的硫醇与nBuLi反应制备的。使用H-1 NMR和IR光谱以及熔点标准对目标分子进行表征。晶体结构分析用于确定固态结构。晶体数据如下。 1:130 K时的Cu K alpha(λ= 1.541 78埃),a = 12.152(3)埃,b = 15.260(3)埃,c = 14.764(5)埃,beta = 106.90(2)度,V = 2619.6(12)埃(3),Z = 4,单斜,空间群P2(1)/ c,2526反射(I> 2 sigma(I)),R = 0.064。 2:Cu K alpha(λ= 1.541 78埃)在228 K时,a = 15.805(7)埃,b = 9.206(4)埃,c = 18.923(7)埃,beta = 99.74(3)度,V = 2714(2)埃(3),Z = 4,单斜,空间群P2(1)/ n,2047反射(I> 2 sigma(I)),R = 0.085。 3:Mo K alpha(lambda = 0.710 73埃)在213 K,a = 13.141(3)埃,b = 12.381(2)埃,c = 14.664(3)埃,beta = 94.84(3)度,V = 2377.3(8)埃(3),Z = 2,单斜晶系,空间群P2(1)/ n,2622反射(I> 2 sigma(I)),R = 0.052。 4:130 K时的Cu K alpha(λ= 1.541 78埃),a = 18.906(4)埃,b = 9.516(2)埃,c = 25.617(5)埃,beta = 92.75(3)度,V = 4603(2)埃(3),Z = 4,单斜,空间群I2 / a,反射2390(I> 2 sigma(I)),R = 0.067。 5:Mo K alpha(λ= 0.710 73埃)在213 K,a = 9.991(2)埃,b = 17.934(4)埃,c = 20.314(4)埃,α= 83.36(3)度,beta = 76.74(3)度,伽玛= 76.72(3)度,V = 3440.4(12)埃(3),Z = 2,三斜线,空间群P1,6397反射(I> 2.5 sigma(I)),R = 0.663 。 6:Mo K alpha(λ= 0.710 73埃)在213 K,a = 10.542(2)埃,b = 12.821(3)埃,c = 18.729(4)埃,beta = 102.22(3)度,V = 2474.0(9)埃(3),Z = 4,单斜,空间群P2(1)/ c,4206反射(I> 2 sigma(I)),R = 0.086。 7:Mo K alpha(λ= 0.710 73埃)在213 K,a = 10.134(2)埃,b = 19.800(4)埃,c = 18.423(4)埃,beta = 93.15(3)度,V = 3691.0(13)埃(3),Z = 4,单斜,空间群P2(1)/ n,4088次反射(I> 2 sigma(I)),R = 0.092。 [参考:43]

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