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用于仲胺不对称动态动力学拆分的共价有机框架基光酶纳米反应器

Covalent Organic Frameworks Based Photoenzymatic Nano-reactor for Asymmetric Dynamic Kinetic Resolution of Secondary Amines.

作者信息

Ran Lu, Chen Yu, Zhu Yanqiu, Cai Huanyu, Pang Huaji, Yan Dingce, Xiang Yonggang, Teng Huailong

机构信息

College of Chemistry, Huazhong Agricultural University, Wuhan, 430070, P. R. China.

Analytical and Testing Center, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 15;63(16):e202319732. doi: 10.1002/anie.202319732. Epub 2024 Mar 12.

Abstract

Bio-catalysis represents a highly efficient and stereoselective method for the synthesis of valuable chiral compounds, however, the poor stability and limited reaction types of free enzymes restrict their wide application in industrial production. In this work, to overcome these problems, a multifunctional photoenzymatic nanoreactor CALB@COF-Ir was developed through the encapsulation of Candida antarctica lipase B (CALB) in a photosensitive covalent organic framework COF-Ir. This bio-nanocluster serves as efficient catalysts in asymmetric dynamic kinetic resolution (DKR) of secondary amines to give a series of chiral amines in high yields (up to 99 %) and enantioselectivities (up to 99 % ee). The well-designed COF-Ir not only acts as safety cover to prevent CALB from deactivation but promotes racemization of secondary amines via photo-induced hydrogen atom transfer (HAT) process. Photoelectric characterization and TDDFT calculation revealed that (ppy)Ir units in COF-Ir play crucial role in this photocatalytic system which enhance its photo-redox properties through facilitating the separation between photoelectrons (e) and holes (h). Furthermore, the heterogeneous photoenzymatic nanoreactor could be recycled for five rounds with slight decline of catalytic reactivity.

摘要

生物催化是合成有价值手性化合物的一种高效且立体选择性的方法,然而,游离酶稳定性差和反应类型有限限制了它们在工业生产中的广泛应用。在这项工作中,为克服这些问题,通过将南极假丝酵母脂肪酶B(CALB)封装在光敏共价有机框架COF-Ir中,开发了一种多功能光酶纳米反应器CALB@COF-Ir。这种生物纳米簇在仲胺的不对称动态动力学拆分(DKR)中作为高效催化剂,以高产率(高达99%)和对映选择性(高达99% ee)得到一系列手性胺。精心设计的COF-Ir不仅作为安全覆盖物防止CALB失活,还通过光诱导氢原子转移(HAT)过程促进仲胺的外消旋化。光电表征和TDDFT计算表明,COF-Ir中的(ppy)Ir单元在该光催化体系中起关键作用,通过促进光电子(e)和空穴(h)之间的分离增强其光氧化还原性质。此外,这种多相光酶纳米反应器可以循环使用五轮,催化活性略有下降。

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