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具有选择性催化活性的仿生手性纳米材料。

Biomimetic Chiral Nanomaterials with Selective Catalysis Activity.

机构信息

School of Perfume and Aroma Technology, Shanghai Institute of Technology, No. 100 Haiquan Road, Shanghai, 201418, China.

School of Food Science and Technology, State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, Jiangsu, 214122, China.

出版信息

Adv Sci (Weinh). 2024 Jun;11(23):e2306979. doi: 10.1002/advs.202306979. Epub 2024 Apr 1.

Abstract

Chiral nanomaterials with unique chiral configurations and biocompatible ligands have been booming over the past decade for their interesting chiroptical effect, unique catalytical activity, and related bioapplications. The catalytic activity and selectivity of chiral nanomaterials have emerged as important topics, that can be potentially controlled and optimized by the rational biochemical design of nanomaterials. In this review, chiral nanomaterials synthesis, composition, and catalytic performances of different biohybrid chiral nanomaterials are discussed. The construction of chiral nanomaterials with multiscale chiral geometries along with the underlying principles for enhancing chiroptical responses are highlighted. Various biochemical approaches to regulate the selectivity and catalytic activity of chiral nanomaterials for biocatalysis are also summarized. Furthermore, attention is paid to specific chiral ligands, materials compositions, structure characteristics, and so on for introducing selective catalytic activities of representative chiral nanomaterials, with emphasis on substrates including small molecules, biological macromolecule, and in-site catalysis in living systems. Promising progress has also been emphasized in chiral nanomaterials featuring structural versatility and improved chiral responses that gave rise to unprecedented chances to utilize light for biocatalytic applications. In summary, the challenges, future trends, and prospects associated with chiral nanomaterials for catalysis are comprehensively proposed.

摘要

在过去的十年中,具有独特手性构型和生物相容性配体的手性纳米材料因其有趣的手性光学效应、独特的催化活性和相关的生物应用而蓬勃发展。手性纳米材料的催化活性和选择性已成为一个重要的研究课题,可以通过纳米材料的合理生化设计来潜在地控制和优化。本综述讨论了不同生物杂化手性纳米材料的手性纳米材料的合成、组成和催化性能。强调了具有多尺度手性几何形状的手性纳米材料的构建以及增强手性响应的基本原理。还总结了各种生化方法来调节手性纳米材料的选择性和催化活性,用于生物催化。此外,还关注了特定的手性配体、材料组成、结构特征等,以介绍具有代表性的手性纳米材料的选择性催化活性,重点介绍了包括小分子、生物大分子和活体系统中的原位催化在内的各种底物。还强调了在手性纳米材料中具有结构多功能性和改善的手性响应方面的有希望的进展,这为利用光进行生物催化应用带来了前所未有的机会。总之,全面提出了手性纳米材料在催化方面面临的挑战、未来趋势和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85e9/11187969/0b915981c7d2/ADVS-11-2306979-g020.jpg

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