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钯催化氮丙啶的区域选择性和立体特异性开环交叉偶联:实验与计算研究

Palladium-Catalyzed Regioselective and Stereospecific Ring-Opening Cross-Coupling of Aziridines: Experimental and Computational Studies.

作者信息

Takeda Youhei, Sameera W M C, Minakata Satoshi

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Yamadaoka 2-1, Suita, Osaka 565-0871, Japan.

Institute of Low Temperature Science, Hokkaido University, Kita-ku, North 19 West 8, Sapporo, Hokkaido 060-0819, Japan.

出版信息

Acc Chem Res. 2020 Aug 18;53(8):1686-1702. doi: 10.1021/acs.accounts.0c00395. Epub 2020 Aug 6.

Abstract

Aziridines, i.e., the smallest saturated N-heterocycles, serve as useful building blocks in synthetic organic chemistry. Because of the release of the large ring strain energy accommodated in the small ring, (ca. 27 kcal/mol), aziridines undergo ring-opening reactions with a variety of nucleophiles. Therefore, among the synthetic reactions utilizing aziridines, regioselective ring-opening substitutions of aziridines with nucleophiles, such as heteroatomic nucleophiles (e.g., amines, alcohols, and thiols) and carbonaceous nucleophiles (e.g., carbanions, organometallic reagents, and electron-rich arenes), constitute a useful synthetic methodology to synthesize biologically relevant β-functionalized alkylamines. However, the regioselection in such traditional ring-opening substitutions of aziridines is highly dependent on the substrate combination, and stereochemical control is challenging to achieve, especially in the case of Lewis acid-promoted variants. Therefore, the development of robust catalytic ring-opening functionalization methods that enable precise prediction of regioselectivity and stereochemistry is desirable. In this direction, our group focused on the highly regioselective and stereospecific nature of the stoichiometric oxidative addition elementary step of 2-substituted aziridines into Pd(0) complexes in an S2 fashion. In conjunction with the recent advancements in transition-metal-catalyzed cross-coupling reactions of alkyl pseudohalides containing a C(sp)-Q (Q = O, N, S, etc.) bond, aziridines can be used as nonclassical alkyl pseudohalides in regioselective and stereospecific cross-couplings.In this Account, starting from the background of transition-metal-catalyzed ring-opening functionalization of aziridines, our contributions to the palladium-catalyzed regioselective and stereoinvertive cross-couplings of aziridines with organoboron reagents to form C(sp)-C, C(sp)-B, and C(sp)-Si bonds have been compiled. The developed methods allow the syntheses of medicinally important amine compounds, e.g., enantioenriched β-phenethylamines, β-amino acids, and their boron and silyl surrogates, from readily available enantiopure aziridine substrates. Notably, the regioselectivity of the ring opening can be switched by appropriate selection of the catalyst (i.e., Pd/NHC vs Pd/PR systems). Computational studies rationalized the detailed mechanisms of the full catalytic cycle and the regioselectivity and stereospecificity of the reactions. The computational results suggested that the interactions operating between the Pd catalyst and aziridine substrate play important roles in determining the regioselection of the aziridine ring-opening event (i.e., oxidative addition). Also, the computational results rationalized the role of water molecules in promoting the transmetalation step through the formation of a Pd-hydroxide active intermediate. This Account evidences the benefits of synergistic collaborations between experimental and computational methods in developing novel transition-metal-catalyzed cross-coupling reactions.

摘要

氮杂环丙烷,即最小的饱和氮杂环,是有机合成化学中有用的结构单元。由于小环中容纳的大环张力能的释放(约27千卡/摩尔),氮杂环丙烷能与多种亲核试剂发生开环反应。因此,在利用氮杂环丙烷的合成反应中,氮杂环丙烷与亲核试剂(如杂原子亲核试剂,如胺、醇和硫醇,以及碳质亲核试剂,如碳负离子、有机金属试剂和富电子芳烃)的区域选择性开环取代反应,构成了一种合成与生物相关的β-官能化烷基胺的有用合成方法。然而,这种传统的氮杂环丙烷开环取代反应中的区域选择性高度依赖于底物组合,立体化学控制很难实现,尤其是在路易斯酸促进的反应变体中。因此,开发能够精确预测区域选择性和立体化学的稳健催化开环官能化方法是很有必要的。在这个方向上,我们小组关注2-取代氮杂环丙烷以S2方式化学计量氧化加成到Pd(0)配合物中的高度区域选择性和立体特异性性质。结合最近过渡金属催化的含C(sp)-Q(Q = O、N、S等)键的烷基拟卤化物的交叉偶联反应的进展,氮杂环丙烷可以用作非经典烷基拟卤化物进行区域选择性和立体特异性交叉偶联。在本综述中,从过渡金属催化的氮杂环丙烷开环官能化的背景出发,我们对钯催化的氮杂环丙烷与有机硼试剂的区域选择性和立体反转交叉偶联反应以形成C(sp)-C、C(sp)-B和C(sp)-Si键的贡献进行了汇总。所开发的方法允许从容易获得的对映体纯氮杂环丙烷底物合成具有药用重要性的胺化合物,例如对映体富集的β-苯乙胺、β-氨基酸及其硼和硅替代物。值得注意的是,开环的区域选择性可以通过适当选择催化剂(即Pd/NHC对Pd/PR体系)来切换。计算研究使整个催化循环的详细机理以及反应的区域选择性和立体特异性合理化。计算结果表明,Pd催化剂与氮杂环丙烷底物之间的相互作用在决定氮杂环丙烷开环事件(即氧化加成)的区域选择性方面起着重要作用。此外,计算结果使水分子通过形成Pd-氢氧化物活性中间体促进转金属化步骤的作用合理化了。本综述证明了实验和计算方法之间协同合作在开发新型过渡金属催化的交叉偶联反应中的益处。

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