School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.
Department of Biomedical Engineering, Faculty of Engineering, National University of Singapore, Singapore 117583.
ACS Nano. 2021 Mar 23;15(3):3709-3735. doi: 10.1021/acsnano.0c09231. Epub 2021 Mar 9.
Upconversion nanoparticles (UCNPs) represent a class of optical nanomaterials that can convert low-energy excitation photons to high-energy fluorescence emissions. On the basis of UCNPs, heterostructured UCNPs, consisting of UCNPs and other functional counterparts (metals, semiconductors, polymers, .), present an intriguing system in which the physicochemical properties are largely influenced by the entire assembled particle and also by the morphology, dimension, and composition of each individual component. As multicomponent nanomaterials, heterostructured UCNPs can overcome challenges associated with a single component and exhibit bifunctional or multifunctional properties, which can further expand their applications in bioimaging, biodetection, and phototherapy. In this review, we provide a summary of recent achievements in the field of heterostructured UCNPs in the aspects of construction strategies, synthetic approaches, and types of heterostructured UCNPs. This review also summarizes the trends in biomedical applications of heterostructured UCNPs and discusses the challenges and potential solutions in this field.
上转换纳米粒子(UCNPs)是一类光学纳米材料,可以将低能量激发光子转换为高能荧光发射。基于 UCNPs,由 UCNPs 和其他功能对应物(金属、半导体、聚合物等)组成的异质结构 UCNPs 呈现出一种有趣的系统,其中物理化学性质在很大程度上受到整个组装粒子以及每个单独成分的形态、尺寸和组成的影响。作为多组分纳米材料,异质结构 UCNPs 可以克服与单个组分相关的挑战,并表现出双功能或多功能特性,从而进一步扩展其在生物成像、生物检测和光疗中的应用。在这篇综述中,我们总结了异质结构 UCNPs 在构建策略、合成方法和异质结构 UCNPs 类型等方面的最新研究成果。本文还总结了异质结构 UCNPs 在生物医学应用中的发展趋势,并讨论了该领域面临的挑战和潜在解决方案。