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树状聚合物包裹的纳米粒子核胶束作为一种盒中盒纳米结构的模块化策略。

Dendrimer-encapsulated nanoparticle-core micelles as a modular strategy for particle-in-a-box-in-a-box nanostructures.

机构信息

Laboratory of BioNanoTechnology, Wageningen University & Research, Axis, 6708 WG Wageningen, The Netherlands.

出版信息

Nanoscale. 2017 Dec 7;9(47):18619-18623. doi: 10.1039/c7nr06773a.

Abstract

The hierarchically controlled synthesis and characterization of self-assembling macromolecules and particles are key to explore and exploit new nanomaterials. Here we present a versatile strategy for constructing particle-in-a-box-in-a-box systems by assembling dendrimer-encapsulated gold nanoparticles (DENs) into dendrimicelles. This is realized by combining positively charged PAMAM dendrimers with a negative-neutral block copolymer. The number of particles per dendrimicelle can be controlled by mixing DENs with empty PAMAM dendrimers. The dendrimicelles are stable in solution for months and provide improved resistance for the nanoparticles against degradation. The dendrimicelle strategy provides a flexible platform with a plethora of options for variation in the type of nanoparticles, dendrimers and block copolymers used, and hence is tunable for applications ranging from nanomedicine to catalysis.

摘要

层状控制自组装大分子和颗粒的合成与表征是探索和利用新型纳米材料的关键。在这里,我们提出了一种通过将金纳米粒子(DENs)包封在树枝状大分子中组装成“盒中盒”粒子的通用策略。这是通过将带正电荷的 PAMAM 树枝状大分子与带负电-中性嵌段共聚物结合来实现的。通过将 DENs 与空 PAMAM 树枝状大分子混合,可以控制每个树枝状胶束中的粒子数量。树枝状胶束在溶液中稳定数月,并为纳米粒子提供了提高的抗降解能力。该树枝状胶束策略提供了一个灵活的平台,具有多种选择,可以改变所使用的纳米粒子、树枝状大分子和嵌段共聚物的类型,因此可针对从纳米医学到催化等各种应用进行调整。

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