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核壳磁性粒子:定制合成与应用

Core-Shell Magnetic Particles: Tailored Synthesis and Applications.

作者信息

Zou Yidong, Sun Zhenkun, Wang Qiyue, Ju Yanmin, Sun Nianrong, Yue Qin, Deng Yu, Liu Shanbiao, Yang Shengfei, Wang Zhiyi, Li Fangyuan, Hou Yanglong, Deng Chunhui, Ling Daishun, Deng Yonghui

机构信息

Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and State Key Laboratory of Molecular Engineering of Polymers, iChEM, Fudan University, Shanghai 200433, P. R. China.

Department of Polymeric Materials, School of Materials Science and Engineering, Tongji University, Shanghai 201804, P. R. China.

出版信息

Chem Rev. 2025 Jan 22;125(2):972-1048. doi: 10.1021/acs.chemrev.4c00710. Epub 2024 Dec 27.

Abstract

Core-shell magnetic particles consisting of magnetic core and functional shells have aroused widespread attention in multidisciplinary fields spanning chemistry, materials science, physics, biomedicine, and bioengineering due to their distinctive magnetic properties, tunable interface features, and elaborately designed compositions. In recent decades, various surface engineering strategies have been developed to endow them desired properties (e.g., surface hydrophilicity, roughness, acidity, target recognition) for efficient applications in catalysis, optical modulation, environmental remediation, biomedicine, etc. Moreover, precise control over the shell structure features like thickness, porosity, crystallinity and compositions including metal oxides, carbon, silica, polymers, and metal-organic frameworks (MOFs) has been developed as the major method to exploit new functional materials. In this review, we highlight the synthesis methods, regulating strategies, interface engineering, and applications of core-shell magnetic particles over the past half-century. The fundamental methodologies for controllable synthesis of core-shell magnetic materials with diverse organic, inorganic, or hybrid compositions, surface morphology, and interface property are thoroughly elucidated and summarized. In addition, the influences of the synthesis conditions on the physicochemical properties (e.g., dispersibility, stability, stimulus-responsiveness, and surface functionality) are also discussed to provide constructive insight and guidelines for designing core-shell magnetic particles in specific applications. The brand-new concept of "core-shell assembly chemistry" holds great application potential in bioimaging, diagnosis, micro/nanorobots, and smart catalysis. Finally, the remaining challenges, future research directions and new applications for the core-shell magnetic particles are predicted and proposed.

摘要

由磁芯和功能壳组成的核壳磁性粒子因其独特的磁性、可调节的界面特性以及精心设计的组成,在化学、材料科学、物理学、生物医学和生物工程等多学科领域引起了广泛关注。近几十年来,人们开发了各种表面工程策略,赋予它们所需的性质(如表面亲水性、粗糙度、酸度、目标识别能力),以便在催化、光学调制、环境修复、生物医学等领域高效应用。此外,精确控制壳结构特征,如厚度、孔隙率、结晶度以及组成,包括金属氧化物、碳、二氧化硅、聚合物和金属有机框架(MOF),已成为开发新型功能材料的主要方法。在这篇综述中,我们重点介绍了核壳磁性粒子在过去半个世纪中的合成方法、调控策略、界面工程及应用。全面阐述并总结了可控合成具有不同有机、无机或混合组成、表面形态和界面性质的核壳磁性材料的基本方法。此外,还讨论了合成条件对物理化学性质(如分散性、稳定性、刺激响应性和表面功能性)的影响,为特定应用中设计核壳磁性粒子提供建设性的见解和指导。“核壳组装化学”这一全新概念在生物成像、诊断、微纳机器人和智能催化等方面具有巨大的应用潜力。最后,对核壳磁性粒子面临的剩余挑战、未来研究方向和新应用进行了预测和提出。

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