Fan Jun-Bing, Huang Chao, Jiang Lei, Wang Shutao
Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China.
J Mater Chem B. 2013 May 7;1(17):2222-2235. doi: 10.1039/c3tb00021d. Epub 2013 Mar 22.
Multiscale nanoporous microspheres have attracted great research interest in multiple fields, such as separation, catalysis, sensors, energy storage, tissues engineering and drug release, due to their excellent permeability, high surface area, low density and stable mechanical properties. In this review, well-defined nanoporous microspheres ranging from inorganic to organic nanoporous microspheres are presented and categorized. First, we classify nanoporous microspheres into three main structural categories that include an "opened" nanoporous microsphere, a "closed" nanoporous microsphere and surface nanoporous microspheres. The corresponding approaches to fabricating these nanoporous microspheres are further presented, which mainly include hydrothermal/solvothermal synthesis, thermal decomposition, suspension polymerization, dispersion polymerization, precipitation polymerization, emulsion polymerization, multiple emulsion-solvent evaporation, template and microfluidic methods. In addition, our discussions focus on the healthcare applications of nanoporous microspheres, such as bioseparation, drug control and release and tissue engineering. This review will be expected to provide a comprehensive guide to the design and synthesis of functional nanoporous microspheres that closely relate to healthcare applications.
多尺度纳米多孔微球因其优异的渗透性、高比表面积、低密度和稳定的机械性能,在分离、催化、传感器、储能、组织工程和药物释放等多个领域引起了极大的研究兴趣。在这篇综述中,我们展示并分类了从无机到有机纳米多孔微球的明确定义的纳米多孔微球。首先,我们将纳米多孔微球分为三个主要结构类别,包括“开放”纳米多孔微球、“封闭”纳米多孔微球和表面纳米多孔微球。进一步介绍了制备这些纳米多孔微球的相应方法,主要包括水热/溶剂热合成、热分解、悬浮聚合、分散聚合、沉淀聚合、乳液聚合、多重乳液-溶剂蒸发、模板法和微流控方法。此外,我们的讨论集中在纳米多孔微球的医疗保健应用,如生物分离、药物控制和释放以及组织工程。这篇综述有望为与医疗保健应用密切相关的功能性纳米多孔微球的设计和合成提供全面的指导。