Mo Alexander H, Landon Preston B, Emerson Chris D, Zhang Chen, Anzenberg Paula, Akkiraju Siddhartha, Lal Ratnesh
Materials Science and Engineering Program, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093.
Dept. of Bioengineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093.
Nanoscale. 2015 Jan 14;7(2):771-775. doi: 10.1039/c4nr05153j.
Colloidal particles with two or more different surface properties (Janus particles) are of interest in catalysis, biological imaging, and drug delivery. Eccentric nanoparticles are a type of Janus particle consisting of a shell that envelops the majority of a core particle, leaving a portion of the core surface exposed. Previous work to synthesize eccentric nanoparticles from silica and polystyrene have only used microemulsion techniques. In contrast we report the sol-gel synthesis of eccentric Janus nanoparticles composed of a silica shell around a carboxylate-modified polystyrene core (Janus templates). In addition, we have synthesized nano-bowl-like structures after the removal of the polystyrene core by organic solvent. These Janus templates and nanobowls can be used as a versatile platform for site-specific functionalization or controlled theranostic delivery.
具有两种或更多种不同表面性质的胶体颗粒(双面粒子)在催化、生物成像和药物递送领域备受关注。偏心纳米粒子是一种双面粒子,由包裹大部分核心粒子的壳组成,使部分核心表面暴露在外。先前从二氧化硅和聚苯乙烯合成偏心纳米粒子的工作仅使用了微乳液技术。相比之下,我们报道了由羧酸盐改性的聚苯乙烯核心(双面模板)周围的二氧化硅壳组成的偏心双面纳米粒子的溶胶-凝胶合成。此外,我们通过有机溶剂去除聚苯乙烯核心后合成了纳米碗状结构。这些双面模板和纳米碗可作为用于位点特异性功能化或可控治疗诊断递送的通用平台。