首页> 外文OA文献 >Lewis-base adducts of Group 11 metal(I) compounds. Part 28. Solid-state phosphorus-31 cross-polarization magic-angle spinning nuclear magnetic resonance and structural studies on the mononuclear 3: 1 adducts of triphenylphosphine with copper(I) halides
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Lewis-base adducts of Group 11 metal(I) compounds. Part 28. Solid-state phosphorus-31 cross-polarization magic-angle spinning nuclear magnetic resonance and structural studies on the mononuclear 3: 1 adducts of triphenylphosphine with copper(I) halides

机译:11族金属(I)化合物的路易斯碱加合物。第28部分。三苯基膦与卤化铜(I)的单核3:1加成物的固态磷31交叉极化幻角旋转核磁共振和结构研究

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摘要

Solid-state cross-polarization magic-angle spinning 31P n.m.r. data and single-crystal X-ray diffraction structure determinations are reported for solvated and unsolvated 3: 1 adducts of triphenylphosphine with copper(i) halides, [Cu( PPh,),X]. The structures of the unsolvated bromide and iodide complexes are isomorphous with the previously studied chloride analogue, crystallizing in the trigonal space group P3 with three independent molecules each disposed about a crystallographic three-fold symmetry axis. Two of the molecules are related by a pseudo-inversion centre. The PPh, ligands adopt a skewed conformation about Cu-P with respect to Cu-X [X-Cu-P-C(l1 1 ) angles 30.6-34.1 "I. The Cu-P distances are not halide dependent [Br, 2.351 (4), 2.340(4), and 2.369(4) A; I, 2.362(3), 2.346(5), and 2.357(5) A] and all P-Cu-P angles are close to the tetrahedral value. Solid-state ,'P n.m.r. spectra of each halide reveal two symmetric quartets in an intensity ratio of 2: 1 ; average chemical shifts overall are -1 0, -1 3, and -1 7 p.p.m. for X = CI, Br, and I respectively. The splittings within each quartet are also halide independent ranging between 900 and 940 Hz. The high intensity quartet is assigned to the two enantiomerically related molecules. The acetone solvated structures crystallize in the triclinic space group Pi with the bromide and iodide isomorphous. Solvation changes the conformation of the PPh, ligands about Cu-P from skewed to staggered, with X-Cu-P-C(l11) 45.5-56.3". The p-o tential increase in back strain because of this conformational change is relieved by an increase of 5" in the P-Cu-P angles. The Cu-P and P-Cu-P bond lengths and angles again do not change significantly with halogen within the series. The solid-state 31P n.m.r. spectra each reveal a single quartet shifted downfield by 6-1 0 p.p.m.; the quartets are slightly more asymmetric than in the trigonal phase with splitting values lying in the range 890-980 Hz.
机译:固态交叉极化幻角旋转31P n.m.r.报告了三苯基膦与卤化铜(i)[Cu(PPh,),X]的3:1加成溶剂化物和非溶剂化物的数据和单晶X射线衍射结构测定。未溶剂化的溴化物和碘化物络合物的结构与先前研究的氯化物类似物是同构的,在三角形空间群P3中结晶,其中三个独立分子分别围绕晶体学三重对称轴布置。两个分子由伪反转中心关联。 PPh配体相对于Cu-X采用关于Cu-P的偏构象[X-Cu-PC(11 1)角30.6-34.1“I。Cu-P距离不依赖卤化物[Br,2.351(4 ),2.340(4)和2.369(4)A; I,2.362(3),2.346(5)和2.357(5)A],并且所有P-Cu-P角均接近四面体值。状态下,每个卤化物的'P nmr光谱显示强度比为2:1的两个对称四重态;对于X = CI,Br和I,总体平均化学位移分别为-1 0,-1 3和-1 7 ppm。在每个四重态中的分裂也与卤化物无关,范围在900至940 Hz之间;高强度四重态归属于两个对映体相关的分子;丙酮溶剂化的结构在三斜空间群Pi中结晶,且溴化物和碘化物同构。 PPh的构象,Cu-P的配体从X-Cu-PC(11)45.5-56.3“倾斜到交错。 P-Cu-P角增加5“可以缓解由于这种构象变化而引起的潜在应变的潜在增加。Cu-P和P-Cu-P键的长度和角度也不会因卤素而明显改变固态31P nmr光谱每个都显示一个四重奏向场下移6-1 0 ppm;四重奏比三角相稍微不对称,分裂值在890-980 Hz范围内。

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