首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Structural diversity in solvated lithium aryloxides. Syntheses, characterization, and structures of [Li(OAr)(THF)(x)](n) and [Li(OAr)(py)(x)](2) complexes where OAr=OC6H5, OC6H4(2-Me), OC6H3(2,6-(Me))(2), OC6H4(2-Pr-i), OC6H3(2,6-(Pr-i))(2), OC6H4(2-
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Structural diversity in solvated lithium aryloxides. Syntheses, characterization, and structures of [Li(OAr)(THF)(x)](n) and [Li(OAr)(py)(x)](2) complexes where OAr=OC6H5, OC6H4(2-Me), OC6H3(2,6-(Me))(2), OC6H4(2-Pr-i), OC6H3(2,6-(Pr-i))(2), OC6H4(2-

机译:溶剂化的芳基锂氧化物的结构多样性。 [Li(OAr)(THF)(x)](n)和[Li(OAr)(py)(x)](2)配合物的合成,表征和结构,其中OAr = OC6H5,OC6H4(2-Me) ,OC6H3(2,6-(Me))(2),OC6H4(2-Pr-i),OC6H3(2,6-(Pr-i))(2),OC6H4(2-

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A series of sterically varied aryl alcohols H-OAr [OAr = OC6H5 (OPh), OC6H4(2-Me) (oMP), OC6H3(2,6-(Me))(2) (DMP), OC6H4(2-Pr-i) (oPP), OC6H3(2,6-(Pr-i))(2) (DIP), OC6H4(2-Bu-t) (oBP), OC6H3(2,6-(Bu-t))(2) (DBP); Me = CH3, Pr-i = CHMe2, and Bu-t = CMe3] were reacted with LiN(SiMe3)(2) in a Lewis basic solvent [tetrahydrofuran (THF) or pyridine (py)] to generate the appropriate "Li(OAr)(solv)(x)". In the presence of THF, the OPh derivative was previously identified as the hexagonal prismatic complex [Li(OPh)(THF)](6); however, the structure isolated from the above route proved to be the tetranuclear species [Li(OPh)(THF)](4) (1). The other "Li(OAr)(THF)(x)" products isolated were characterized by single-crystal X-ray diffraction as [Li(OAr)(THF)](4) [OAr = oMP (2), DMP (3), oPP (4)1, [Li(DIP)(THF)](3) (5), [Li(oBP)(THF)(2)](2), (6), and [Li(DBP)(THF)](2), (7). The tetranuclear species (1-4) consist of symmetric cubes of alternating tetrahedral Li and pyramidal O atoms, with terminal THF solvent molecules bound to each metal center. The trinuclear species 5 consists of a six-membered ring of alternating trigonal planar Li and bridging O atoms, with one THF solvent molecule bound to each metal center. Compound 6 possesses two Li atoms that adopt tetrahedral geometries involving two bridging oBP and two terminal THF ligands. The structure of 7 was identical to the previously reported [Li(DBP)(THF)](2) species, but different unit cell parameters were observed. Compound 7 varies from 6 in that only one solvent molecule is bound to each Li metal center of 7 because of the steric bulk of the DBP ligand. In contrast to the structurally diverse THF adducts, when py was used as the solvent, the appropriate "Li(OAr)(py)(x)" complexes were isolated as [Li(OAr)(py)(2)](2) (OAr = OPh (8), oMP (9), DMP (10), oPP (11), DIP (12), oBP (13)) and [Li-(DBP)(py)](2) (14). Compounds 8-13 adopt a dinuclear, edge-shared tetrahedral complex. For 14, because of the steric crowding of the DBP ligand, only one py is coordinated, yielding a dinuclear fused trigonal planar arrangement. Two additional structure types were also characterized for the DIP ligand: [Li(DIP)(H-DIP)(py)](2) (12b) and [Li-2(DIP)(2)(py)(3)] (12c). Multinuclear (Li-6,Li-7 and C-13) solid-state MAS NMR spectroscopic studies indicate that the bulk powder possesses several Li environments for "transitional ligands" of the THF complexes; however, the py adducts possess only one Li environment, which is consistent with the solid-state structures. Solution NMR studies indicate that "transitional" compounds of the THF precursors display multiple species in solution whereas the py adducts display only one lithium environment. [References: 26]
机译:一系列空间变化的芳基醇H-OAr [OAr = OC6H5(OPh),OC6H4(2-Me)(oMP),OC6H3(2,6-(Me))(2)(DMP),OC6H4(2-Pr -i)(oPP),OC6H3(2,6-(Pr-i))(2)(DIP),OC6H4(2-Bu-t)(oBP),OC6H3(2,6-(Bu-t)) (2)(DBP);在路易斯碱性溶剂[四氢呋喃(THF)或吡啶(py)]中,将Me = CH3,Pr-i = CHMe2和Bu-t = CMe3]与LiN(SiMe3)(2)反应生成合适的“ Li( OAr)(solv)(x)”。在THF的存在下,OPh衍生物先前被鉴定为六方棱柱形络合物[Li(OPh)(THF)](6);然而,从上述途径分离出的结构证明是四核物质[Li(OPh)(THF)](4)(1)。分离出的其他“ Li(OAr)(THF)(x)”产物通过单晶X射线衍射表征为[Li(OAr)(THF)](4)[OAr = oMP(2),DMP(3) ),oPP(4)1,[Li(DIP)(THF)](3)(5),[Li(oBP)(THF)(2)](2),(6)和[Li(DBP) (THF)](2),(7)。四核物种(1-4)由交替的四面体Li和金字塔形O原子的对称立方体组成,末端THF溶剂分子键合到每个金属中心。三核物质5由交替的三角形平面Li和桥接的O原子的六元环组成,每个金属中心键合一个THF溶剂分子。化合物6具有两个Li原子,这些Li原子采用涉及两个桥接oBP和两个末端THF配体的四面体几何形状。 7的结构与先前报道的[Li(DBP)(THF)](2)种类相同,但观察到不同的晶胞参数。化合物7与6的不同之处在于,由于DBP配体的空间较大,因此只有一个溶剂分子与7的每个Li金属中心键合。与结构上不同的THF加合物相反,当使用py作为溶剂时,合适的“ Li(OAr)(py)(x)”络合物被分离为[Li(OAr)(py)(2)](2) (OAr = OPh(8),oMP(9),DMP(10),oPP(11),DIP(12),oBP(13))和[Li-(DBP)(py)](2)(14) 。化合物8-13采用双核,边缘共享的四面体复合物。对于14,由于DBP配体的空间拥挤,仅配位一个py,产生双核融合的三角形平面排列。还为DIP配体表征了另外两种结构类型:[Li(DIP)(H-DIP)(py)](2)(12b)和[Li-2(DIP)(2)(py)(3)] (12c)。多核(Li-6,Li-7和C-13)固态MAS NMR光谱研究表明,散装粉末为THF配合物的“过渡配体”提供了多个Li环境。但是,py加合物仅具有一个Li环境,这与固态结构一致。溶液NMR研究表明,THF前体的“过渡”化合物在溶液中显示多种物质,而py加合物仅显示一种锂环境。 [参考:26]

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