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电化学从头合成手性碳点的 L-脯氨酸及其在立体选择性Aldol 反应中的纳米有机催化剂应用。

Electrochemical Bottom-Up Synthesis of Chiral Carbon Dots from L-Proline and Their Application as Nano-Organocatalysts in a Stereoselective Aldol Reaction.

机构信息

Department of Basic and Applied Sciences for Engineering (SBAI), Sapienza University of Rome, via Castro Laurenziano, 7, 00161 Rome, Italy.

CNR-Institute for Biological Systems, Sede Secondaria di Roma-Meccanismi di Reazione, c/o Università La Sapienza, 00185 Rome, Italy.

出版信息

Molecules. 2022 Aug 12;27(16):5150. doi: 10.3390/molecules27165150.

Abstract

Chirality is undoubtedly a fundamental property of nature since the different interactions of optically active molecules in a chiral environment are essential for numerous applications. Thus, in the field of asymmetric synthesis, the search for efficient, sustainable, cost-effective and recyclable chiral catalysts is still the main challenge in organic chemistry. The field of carbon dots (CDs) has experienced tremendous development in the last 15 years, including their applications as achiral catalysts. Thus, understanding the implications of chirality in CDs chemistry could be of utmost importance to achieving sustainable and biocompatible chiral nanocatalysts. An efficient and cost-effective electrochemical synthetic methodology for the synthesis of L-Proline-based chiral carbon dots (CCDs) and EtOH-derived L-Proline-based chiral carbon dots (CCDs) is herein reported. The electrochemical set-up and reaction conditions have been thoroughly optimised and their effects on CCDs size, photoluminescence, as well as catalytic activity have been investigated. The obtained CCDs have been successfully employed to catalyze an asymmetric aldol reaction, showing excellent results in terms of yield, diastereo- and enantioselectivity. Moreover, the sustainable nature of the CCDs was demonstrated by recycling the catalysts for up to 3 cycles without any loss of reactivity or stereoselectivity.

摘要

手性无疑是自然界的基本属性,因为手性环境中光学活性分子的不同相互作用对于许多应用至关重要。因此,在不对称合成领域,寻找高效、可持续、经济实惠且可回收的手性催化剂仍然是有机化学的主要挑战。碳点 (CDs) 领域在过去 15 年中经历了巨大的发展,包括它们作为非手性催化剂的应用。因此,了解手性在 CDs 化学中的意义对于实现可持续和生物相容的手性纳米催化剂可能至关重要。本文报道了一种高效、经济实惠的电化学合成方法,用于合成基于 L-脯氨酸的手性碳点 (CCDs) 和基于 EtOH 的 L-脯氨酸手性碳点 (CCDs)。对电化学装置和反应条件进行了彻底优化,并研究了它们对 CCDs 尺寸、光致发光以及催化活性的影响。所得的 CCDs 已成功用于催化不对称羟醛反应,在产率、非对映选择性和对映选择性方面均取得了优异的结果。此外,通过回收催化剂进行了 3 次循环,证明了 CCDs 的可持续性,没有任何活性或立体选择性的损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae46/9414281/9c41697cf8e7/molecules-27-05150-sch001.jpg

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