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用于生物医学应用的磁性光子晶体。

Magnetic photonic crystals for biomedical applications.

作者信息

Chen Hanxu, Li Ning, Gu Zhuxiao, Gu Hongcheng, Wang Jinglin

机构信息

Department of Hepatobiliary Surgery Nanjing Drum Tower Hospital School of Biological Science and Medical Engineering Southeast University Nanjing China.

出版信息

Smart Med. 2023 Mar 20;2(2):e20220039. doi: 10.1002/SMMD.20220039. eCollection 2023 May.

Abstract

Magnetic photonic crystals (PhCs), as a representative responsive structural color material, have attracted increasing research focus due to merits such as brilliant refraction colors, instant responsiveness, and excellent manipuility, thus having been widely applied for color displaying, three-dimensional printing, sensing, and so on. Featured with traits such as contactless manner, flexible orientations, and adjustable intensity of external magnetism, magnetic PhCs have shown great superiority especially in the field of biomedical applications such as bioimaging and auxiliary clinical diagnosis. In this review, we summarize the current advancements of magnetic PhCs. We first introduce the fundamental principles and typical characteristics of PhCs. Afterward, we present several typical self-assembly strategies with their frontiers in practical applications. Finally, we analyze the current situations of magnetic PhCs and put forward the prospective challenges and future development directions.

摘要

磁性光子晶体(PhCs)作为一种典型的响应型结构色材料,因其具有绚丽的折射颜色、即时响应性和出色的可操控性等优点,而吸引了越来越多的研究关注,因此已广泛应用于彩色显示、三维打印、传感等领域。磁性光子晶体具有非接触方式、灵活取向和外部磁场强度可调节等特点,尤其在生物成像和辅助临床诊断等生物医学应用领域表现出巨大优势。在本综述中,我们总结了磁性光子晶体的当前进展。我们首先介绍光子晶体的基本原理和典型特性。随后,我们介绍了几种典型的自组装策略及其在实际应用中的前沿进展。最后,我们分析了磁性光子晶体的现状,并提出了潜在的挑战和未来的发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22b7/11235834/b9481ee6e431/SMMD-2-e20220039-g010.jpg

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