首页> 美国卫生研究院文献>Chemical Science >Catalyst-controlled regioselectivity in phosphine catalysis: the synthesis of spirocyclic benzofuranones via regiodivergent 3 + 2 annulations of aurones and an allenoate
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Catalyst-controlled regioselectivity in phosphine catalysis: the synthesis of spirocyclic benzofuranones via regiodivergent 3 + 2 annulations of aurones and an allenoate

机译:磷化氢催化中催化剂控制的区域选择性:通过区域扩散的3 + 2金环和脲基酸酯合成螺环苯并呋喃酮

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摘要

Catalyst-controlled regiodivergent [3 + 2] annulations of aurones and allenoates have been developed. When a dipeptide phosphine catalyst with an l-d- configuration was employed, α-selective [3 + 2] annulation products could be obtained with good regioselectivities and enantioselectivities. With the employment of l-l- dipeptide phosphines, γ-selective annulation products could be selectively obtained with excellent enantioselectivities. By simply tuning the catalyst configurations, a wide range of α-selective or γ-selective spirocyclic benzofuranones with either aryl or alkyl substitutions could be readily prepared. DFT calculations suggest that the conformation of the dipeptide phosphines influences the hydrogen bonding interactions or the distortion energy, resulting in delicate energy differentiation in the transition states, and accounting for the observed regioselectivity.
机译:已经开发了催化剂控制的金氧和脲基甲酸酯的区域发散[3 + 2]环。当使用具有l-d-构型的二肽膦催化剂时,可以获得具有良好的区域选择性和对映选择性的α-选择性[3 + 2]环化产物。通过使用-1-二肽膦,可以选择性地获得具有优异对映选择性的γ-选择性环合产物。通过简单地调节催化剂构型,可以容易地制备具有芳基或烷基取代基的宽范围的α-选择性或γ-选择性螺环苯并呋喃酮。 DFT计算表明,二肽膦的构象会影响氢键相互作用或畸变能,从而导致过渡态能量的微分,并解释了所观察到的区域选择性。

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