School of Chemical Engineering, The University of Adelaide, Adelaide, SA5005, Australia.
Small. 2015 Jan 27;11(4):392-413. doi: 10.1002/smll.201401201. Epub 2014 Nov 3.
Dendritic silica micro-/nanoparticles with center-radial pore structures, a kind of newly created porous material, have attracted considerable attention owing to their unique open three-dimensional dendritic superstructures with large pore channels and highly accessible internal surface areas compared with conventional mesoporous silica nanoparticles (MSNs). They are very promising platforms for a variety of applications in catalysis and nanomedicine. In this review, their unique structural characteristics and properties are first analyzed, then novel and interesting synthesis methods associated with the possible formation mechanisms are summarized to provide material scientists some inspiration for the preparation of this kind of dendritic particles. Subsequently, a few examples of interesting applications are presented, mainly in catalysis, biomedicine, and other important fields such as for sacrificial templates and functional coatings. The review is concluded with an outlook on the prospects and challenges in terms of their controlled synthesis and potential applications.
具有中心-放射状孔结构的树枝状二氧化硅微/纳米粒子是一种新型多孔材料,由于其独特的开放式三维树枝状超结构,与传统的介孔二氧化硅纳米粒子 (MSNs) 相比,具有较大的孔道和高度可及的内部表面积,因此引起了相当大的关注。它们是在催化和纳米医学等各种应用中非常有前途的平台。在这篇综述中,首先分析了它们独特的结构特征和性质,然后总结了与可能的形成机制相关的新颖有趣的合成方法,为材料科学家提供了一些关于这种树枝状粒子制备的灵感。随后,介绍了一些有趣的应用实例,主要涉及催化、生物医学以及牺牲模板和功能涂层等其他重要领域。最后,展望了它们在可控合成和潜在应用方面的前景和挑战。