Gelalcha Feyissa Gadissa, Anilkumar Gopinathan, Tse Man Kin, Brückner Angelika, Beller Matthias
4900 East University Boulevard, 609, Odessa, TX 79762, USA.
Chemistry. 2008;14(25):7687-98. doi: 10.1002/chem.200800595.
A novel and general biomimetic non-heme Fe-catalyzed asymmetric epoxidation of aromatic alkenes by using hydrogen peroxide is reported herein. The catalyst consists of ferric chloride hexahydrate (FeCl(3)6 H(2)O), pyridine-2,6-dicarboxylic acid (H(2)(pydic)), and readily accessible chiral N-arenesulfonyl-N'-benzyl-substituted ethylenediamine ligands. The asymmetric epoxidation of styrenes with this system gave high conversions but poor enantiomeric excesses (ee), whereas larger alkenes gave high conversions and ee values. For the epoxidation of trans-stilbene (1 a), the ligands (S,S)-N-(4-toluenesulfonyl)-1,2-diphenylethylenediamine ((S,S)-4 a) and its N'-benzylated derivative ((S,S)-5 a) gave opposite enantiomers of trans-stilbene oxide, that is, (S,S)-2 a and (R,R)-2 a, respectively. The enantioselectivity of alkene epoxidation is controlled by steric and electronic factors, although steric effects are more dominant. Preliminary mechanistic studies suggest the in situ formation of several chiral Fe-complexes, such as [FeCl(L*)(2)(pydic)]HCl (L*=(S,S)-4 a or (S,S)-5 a in the catalyst mixture), which were identified by ESIMS. A UV/Vis study of the catalyst mixture, which consisted of FeCl(3)6 H(2)O, H(2)(pydic), and (S,S)-4 a, suggested the formation of a new species with an absorbance peak at lambda=465 nm upon treatment with hydrogen peroxide. With the aid of two independent spin traps, we could confirm by EPR spectroscopy that the reaction proceeds via radical intermediates. Kinetic studies with deuterated styrenes showed inverse secondary kinetic isotope effects, with values of k(H)/k(D)=0.93 for the beta carbon and k(H)/k(D)=0.97 for the alpha carbon, which suggested an unsymmetrical transition state with stepwise O transfer. Competitive epoxidation of para-substituted styrenes revealed a linear dual-parameter Hammett plot with a slope of 1.00. Under standard conditions, epoxidation of 1 a in the presence of ten equivalents of H(2) (18)O resulted in an absence of the isotopic label in (S,S)-2 a. A positive nonlinear effect was observed during the epoxidation of 1 a in the presence of (S,S)-5 a and (R,R)-5 a.
本文报道了一种新颖且通用的仿生非血红素铁催化体系,该体系利用过氧化氢对芳香烯烃进行不对称环氧化反应。催化剂由六水合氯化铁(FeCl₃·6H₂O)、吡啶 - 2,6 - 二羧酸(H₂(pydic))以及易于获得的手性N - 芳基磺酰基 - N'-苄基取代的乙二胺配体组成。用该体系对苯乙烯进行不对称环氧化反应时,转化率较高,但对映体过量值(ee)较低,而对于较大的烯烃,转化率和ee值都较高。对于反式二苯乙烯(1a)的环氧化反应,配体(S,S)-N - (4 - 甲苯磺酰基)-1,2 - 二苯基乙二胺((S,S)-4a)及其N'-苄基化衍生物((S,S)-5a)分别得到反式环氧二苯乙烯的对映体,即(S,S)-2a和(R,R)-2a。烯烃环氧化反应的对映选择性受空间和电子因素控制,尽管空间效应更为显著。初步机理研究表明,原位形成了几种手性铁配合物,如[FeCl(L*)(2)(pydic)]HCl(L* = 催化剂混合物中的(S,S)-4a或(S,S)-5a),这些配合物通过电喷雾离子化质谱(ESIMS)得以鉴定。对由FeCl₃·6H₂O、H₂(pydic)和(S,S)-4a组成的催化剂混合物进行紫外/可见光谱研究表明,用过氧化氢处理后,在λ = 465 nm处形成了一个具有吸收峰的新物种。借助两个独立的自旋捕获剂,我们通过电子顺磁共振光谱(EPR)证实反应通过自由基中间体进行。用氘代苯乙烯进行的动力学研究显示出反向二级动力学同位素效应,β碳的k(H)/k(D) = 0.93,α碳的k(H)/k(D) = 0.97,这表明存在一个具有逐步氧转移的不对称过渡态。对对位取代苯乙烯的竞争性环氧化反应揭示了一个斜率为1.00的线性双参数哈米特图。在标准条件下,在十当量的H₂¹⁸O存在下对1a进行环氧化反应,结果在(S,S)-2a中未检测到同位素标记。在(S,S)-5a和(R,R)-5a存在下对1a进行环氧化反应时观察到正非线性效应。