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一系列二氢化钌配合物的异构体。哪一种是酮氢化催化剂?

A succession of isomers of ruthenium dihydride complexes. Which one is the ketone hydrogenation catalyst?

作者信息

Abbel Robert, Abdur-Rashid Kamaluddin, Faatz Michael, Hadzovic Alen, Lough Alan J, Morris Robert H

机构信息

Davenport Laboratory, Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada.

出版信息

J Am Chem Soc. 2005 Feb 16;127(6):1870-82. doi: 10.1021/ja039396f.

Abstract

Reaction of RuHCl(PPh(3))(2)(diamine) (1a, diamine = (R,R)-1,2-diaminocyclohexane, (R,R)-dach; 1b, diamine = ethylenediamine, en) with KO(t)Bu in benzene quickly generates solutions of the amido-amine complexes RuH(PPh(3))(2)(NHC(6)H(10)NH(2)), (2a'), and RuH(PPh(3))(2)(NHCH(2)CH(2)NH(2)), (2b'), respectively. These solutions react with dihydrogen to first produce the trans-dihydrides (OC-6-22)-Ru(H)(2)(PPh(3))(2)(diamine) (t,c-3a, t,c-3b). Cold solutions (-20 degrees C) containing trans-dihydride t,c-3a react with acetophenone under Ar to give (S)-1-phenylethanol (63% ee). Complexes t,c-3 have lifetimes of less than 10 min at 20 degrees and then isomerize to the cis-dihydride, cis-bisphosphine isomers (OC-6-32)-Ru(H)(2)(PPh(3))(2)(diamine) (Delta/Lambda-c,c-3a, c,c-3b). A solution containing mainly Delta/Lambda-c,c-3a reacts with acetophenone under Ar to give (S)-1-phenylethanol in 20% ee, whereas it is an active precatalyst for its hydrogenation under 5 atm H(2) to give 1-phenylethanol with an ee of 50-60%. Complexes c,c-3 isomerize to the cis-dihydride, trans-bisphosphine complexes (OC-6-13)-Ru(H)(2)(PPh(3))(2)(diamine) (c,t-3a, c,t-3b) with half-lives of 40 min and 1 h, respectively. A mixture of Delta/Lambda-c,c-3a and c,t-3a can also be obtained by reaction of 1a with KBH(Bu(sec))(3). A solution of complex c,t-3a in benzene under Ar reacts very slowly with acetophenone. These results indicate that the trans-dihydrides t,c-3a or t,c-3b along with the corresponding amido-amine complexes 2a' or 2b' are the active hydrogenation catalysts in benzene, while the cis-dihydrides c,c-3a or c,c-3b serve as precatalysts. The complexes RuCl(2)(PPh(3))(2)((R,R)-dach) or 1a, when activated by KO(t)Bu, are also sources of the active catalysts. A study of the kinetics of the hydrogenation of acetophenone in benzene catalyzed by 3a indicates a rate law: rate = kc,c-3a[H(2)] with k = 7.5 M(-1) s(-1). The turnover-limiting step appears to be the reaction of 2a' with dihydrogen as it is for RuH(NHCMe(2)CMe(2)NH(2))(PPh(3))(2) (2c'). The catalysts are more active in 2-propanol, even without added base, and the kinetic behavior is complicated. The basic cis-dihydride c,t-3a reacts with [NEt(3)H]BPh(4) to produce the dihydrogen complex (OC-14)-[Ru(eta(2)-H(2))(H)(PPh(3))(2)((R,R)-dach)]BPh(4) (4) and with diphenylphosphinic acid to give the complex RuH(O(2)PPh(2))(PPh(3))(2)((R,R)-dach) (5). The structure of 5 models aspects of the transition state structure for the ketone hydrogenation step. Complex 2b' decomposes rapidly under Ar to give dihydrides 3b along with a dinuclear complex (PPh(3))(2)HRu(mu-eta(2);eta(4)-NHCHCHNH)RuH(PPh(3))(2) (6) containing a rare, bridging 1,4-diazabutadiene group. The formation of an imine by beta-hydride elimination from the amido-amine ligand of 2a' under Ar might explain some loss of enantioselectivity of the catalyst. The structures of complexes 1a, 5, and 6 have been determined by single-crystal X-ray diffraction.

摘要

RuHCl(PPh(3))(2)(二胺)(1a,二胺 = (R,R)-1,2-二氨基环己烷,(R,R)-dach;1b,二胺 = 乙二胺,en)与叔丁醇钾在苯中反应,迅速分别生成酰胺 - 胺配合物RuH(PPh(3))(2)(NHC(6)H(10)NH(2))(2a')和RuH(PPh(3))(2)(NHCH(2)CH(2)NH(2))(2b')的溶液。这些溶液与氢气反应首先生成反式二氢化物(OC - 6 - 22)-Ru(H)(2)(PPh(3))(2)(二胺)(t,c - 3a,t,c - 3b)。含有反式二氢化物t,c - 3a的冷溶液(-20℃)在氩气氛围下与苯乙酮反应生成(S)-1 - 苯乙醇(对映体过量63%)。配合物t,c - 3在20℃下的寿命小于10分钟,然后异构化为顺式二氢化物,即顺式双膦异构体(OC - 6 - 32)-Ru(H)(2)(PPh(3))(2)(二胺)(Δ/Λ - c,c - 3a,c,c - 3b)。主要含有Δ/Λ - c,c - 3a的溶液在氩气氛围下与苯乙酮反应,生成对映体过量20%的(S)-1 - 苯乙醇,而它在5个大气压氢气下是其氢化反应的活性预催化剂,生成对映体过量50 - 60%的1 - 苯乙醇。配合物c,c - 3异构化为顺式二氢化物,即反式双膦配合物(OC - 6 - 13)-Ru(H)(2)(PPh(3))(2)(二胺)(c,t - 3a,c,t - 3b),半衰期分别为40分钟和1小时。通过1a与KBH(Bu(sec))(3)反应也可得到Δ/Λ - c,c - 3a和c,t - 3a的混合物。配合物c,t - 3a在氩气氛围下的苯溶液中与苯乙酮反应非常缓慢。这些结果表明,反式二氢化物t,c - 3a或t,c - 3b以及相应的酰胺 - 胺配合物2a'或2b'是苯中氢化反应的活性催化剂,而顺式二氢化物c,c - 3a或c,c - 3b作为预催化剂。配合物RuCl(2)(PPh(3))(2)((R,R)-dach)或1a在被叔丁醇钾活化后,也是活性催化剂的来源。对3a催化苯乙酮在苯中氢化反应的动力学研究表明速率方程为:速率 = kc,c - 3a[H(2)],其中k = 7.5 M(-1) s(-1)。周转限制步骤似乎是2a'与氢气的反应,就像RuH(NHCMe(2)CMe(2)NH(2))(PPh(3))(2)(2c')的情况一样。即使不添加碱,催化剂在2 - 丙醇中也更具活性,并且动力学行为复杂。碱性顺式二氢化物c,t - 3a与[NEt(3)H]BPh(4)反应生成二氢配合物(OC - 14)-[Ru(η(2)-H(2))(H)(PPh(3))(2)((R,R)-dach)]BPh(4)(4),与二苯基次膦酸反应生成配合物RuH(O(2)PPh(2))(PPh(3))(2)((R,R)-dach)(5)。5的结构模拟了酮氢化步骤过渡态结构的某些方面。配合物2b'在氩气氛围下迅速分解,生成二氢化物3b以及含有罕见的桥连1,4 - 二氮杂丁二烯基团的双核配合物(PPh(3))(2)HRu(μ - η(2);η(4)-NHCHCHNH)RuH(PPh(3))(2)(6)。在氩气氛围下,通过2a'的酰胺 - 胺配体的β - 氢消除形成亚胺,这可能解释了催化剂对映选择性的一些损失。配合物1a、5和6的结构已通过单晶X射线衍射确定。

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