School of Chemical and Biomedical Engineering, Nanyang Technological University, 70 Nanyang Drive, Singapore 637457.
J Am Chem Soc. 2011 Jul 20;133(28):10760-3. doi: 10.1021/ja204387w. Epub 2011 Jun 27.
We have developed a new class of plasmonic vesicular nanostructures assembled from amphiphilic gold nanocrystals with mixed polymer brush coatings. One major finding is that the integration of gold nanocrystals (nanoparticles and nanorods) with two types of chemically distinct polymer grafts, which are analogous to block copolymers as a whole, creates a new type of hybrid building block inheriting the amphiphilicity-driven self-assembly of block copolymers to form vesicular structures and the plasmonic properties of the nanocrystals. In contrast to other vesicular structures, the disruption of the plasmonic vesicles can be triggered by stimulus mechanisms inherent to either the polymer or the nanocrystal. Recent advances in nanocrystal synthesis and controlled surface-initiated polymerization have opened a wealth of possibilities for expanding this concept to other types of nanocrystals and integrating different types of nanocrystals into multifunctional vesicles. The development of multifunctional vesicles containing stimuli-responsive polymers could enable their broader applications in biosensing, multimodality imaging, and theragnostic nanomedicine.
我们开发了一类新的等离子体泡状纳米结构,它由具有混合聚合物刷涂层的两亲性金纳米晶体组装而成。一个主要发现是,将金纳米晶体(纳米颗粒和纳米棒)与两种化学性质不同的聚合物接枝结合在一起,就像整个嵌段共聚物一样,创造了一种新型的混合构建块,它继承了两亲性驱动的嵌段共聚物的自组装,以形成泡状结构和纳米晶体的等离子体性质。与其他泡状结构不同的是,通过聚合物或纳米晶体固有的刺激机制可以触发等离子体泡的破坏。纳米晶体合成和控制的表面引发聚合的最新进展为将这一概念扩展到其他类型的纳米晶体以及将不同类型的纳米晶体集成到多功能泡囊中开辟了丰富的可能性。含有刺激响应聚合物的多功能泡囊的开发可以使它们在生物传感、多模态成像和治疗性纳米医学中的应用更加广泛。