Philippopoulos A. I., Bau R., Poilblanc R., Hadjiliadis N.
Laboratory of Inorganic and General Chemistry, Department of Chemistry, University of Ioannina, 45110 Ioannina, Greece, Chemistry Department, University of Southern California, Los Angeles, California 90089, and Laboratoire de Chimie de Coordination du CNRS, Unité No. 8241 liée par convention à l'Université Paul Sabatier et à l'Institut National Polytechnique, 205 Route de Narbonne, 31077 Toulouse Cedex, France.
Inorg Chem. 1998 Sep 21;37(19):4822-4827. doi: 10.1021/ic970740h.
The synthesis of monometallic cobalt(III) and -(I) complexes of ((dimethylamino)ethyl)cyclopentadienyl are reported. The presence of the basic amino group facilitates these synthesis using the corresponding cyclopentadiene complexes as starting material. A cobaltocenium green complex {eta(5)-C(5)H(4)(CH(2))(2)N(H)Me(2)}(2)Co(III)(Cl(-))(3) (3) was obtained from C(5)H(5)(CH(2))(2)NMe(2) (1) or from its salt M[C(5)H(4)(CH(2))(2)NMe(2)] (M = Na, Li) (2) upon reaction with Co(II)Cl(2) in THF. The structure of the complex {(eta(5)-C(5)H(4)(CH(2))(2)NMe(2))(eta(5)-C(5)H(4)(CH(2))(2)N(H)Me(2))}Co(I)(II)(2) (4), prepared from 3 by treatment with NH(4)PF(6) in aqueous solutions, was solved in the triclinic space group P&onemacr; with one molecule in the unit cell, the dimensions of which were a = 6.314(2) Å, b = 7.137(2) Å, c = 13.452(2) Å, alpha = 103.66(2) degrees, beta = 90.25(2) degrees, gamma = 92.89(2) degrees, and V = 588.2(3) Å(3). Adjacent molecules in the unit cell of 4 are hydrogen bonded via a H(+) through their -NMe(2) side chains. The reaction of Co(2)(CO)(8) with C(5)H(5)(CH(2))(2)NMe(2) (1) leads to the formation of [{eta(5)-C(5)H(4)(CH(2))(2)NMe(2)}Co(I)(CO)(2)] (5). Treatment of 5 with HBF(4) in ether solutions yielded {eta(5)-C(5)H(4)(CH(2))(2)N(H)Me(2)}Co(I)(CO)(2)BF(4)(-) (6). Oxidation of 5 with I(2) or Cl(2) gas yielded [{eta(5)-C(5)H(4)(CH(2))(2)NMe(2)}Co(III)I(2)] (7a) and [{eta(5)-C(5)H(4)(CH(2))(2)NMe(2)}Co(III)Cl(2)] (7b). Addition of HBF(4) to complex 7a resulted in the breaking of the Co(III)-NMe(2) bond, producing the dimeric complex {(eta(5)-C(5)H(4)(CH(2))(2)N(H)Me(2))Co(III)I(2)}(2)(BF(4)(-))(2) (9). The bridged diiodo dimer 10, {(eta(5)-C(5)H(4)(CH(2))(2)NMe(2))CoI}(2)(BF(4)(-))(2), on the other hand, could be obtained from complex 7a upon addition of AgBF(4) in CH(2)Cl(2).
报道了((二甲基氨基)乙基)环戊二烯基单金属钴(III)和钴(I)配合物的合成。碱性氨基的存在有利于以相应的环戊二烯配合物为起始原料进行这些合成。钴茂绿色配合物{η(5)-C(5)H(4)(CH(2))(2)N(H)Me(2)}(2)Co(III)(Cl(-))(3) (3)由C(5)H(5)(CH(2))(2)NMe(2) (1)或其盐M[C(5)H(4)(CH(2))(2)NMe(2)] (M = Na, Li) (2)在四氢呋喃中与Co(II)Cl(2)反应制得。配合物{(η(5)-C(5)H(4)(CH(2))(2)NMe(2))(η(5)-C(5)H(4)(CH(2))(2)N(H)Me(2))}Co(I)(II)(2) (4)由3在水溶液中用NH(4)PF(6)处理制得,其晶体结构在三斜晶系空间群P&onemacr;中解析,晶胞中有一个分子,晶胞参数为a = 6.314(2) Å,b = 7.137(2) Å,c = 13.452(2) Å,α = 103.66(2)°,β = 90.25(2)°,γ = 92.89(2)°,V = 588.2(3) Å(3)。4的晶胞中相邻分子通过其-NMe(2)侧链经一个H(+)形成氢键。Co(2)(CO)(8)与C(5)H(5)(CH(2))(2)NMe(2) (1)反应生成[{η(5)-C(5)H(4)(CH(2))(2)NMe(2)}Co(I)(CO)(2)] (5)。5在醚溶液中用HBF(4)处理得到{η(5)-C(5)H(4)(CH(2))(2)N(H)Me(2)}Co(I)(CO)(2)BF(4)(-) (6)。5用I(2)或Cl(2)气体氧化生成[{η(5)-C(5)H(4)(CH(2))(2)NMe(2)}Co(III)I(2)] (7a)和[{η(5)-C(5)H(4)(CH(2))(