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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Salt Plays a Pivotal Role in the Temperature-Responsive Aggregation and Layer-by-Layer Assembly of Polymer-Decorated Gold Nanoparticles
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Salt Plays a Pivotal Role in the Temperature-Responsive Aggregation and Layer-by-Layer Assembly of Polymer-Decorated Gold Nanoparticles

机译:盐在温度响应性聚集和聚合物装饰的金纳米颗粒的逐层组装中起关键作用

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We report that the aqueous self-assembly behavior of citrate based gold nanoparticles decorated with the temperature responsive RAFT-based polymer poly(N-isopropylacrylamide) critically depends on the presence of salt in the medium. Both for temperature induced reversible agglomeration and for hydrogen bonding based layer-by-layer assembly with tannic acid, the presence of salt dramatically promotes the assembly behavior. We attribute this to a combination of ionic screening of the remaining citrate groups on the nanoparticle surface and a salting out effect which increases the contribution of hydrophobic interactions in the self-assembly process. These findings provide new insights into an attractive class of polymer/gold hybrid nanomaterials that can find application in biotechnology, catalysis, and biomedicine.
机译:我们报告说,以温度响应的RAFT为基础的聚合物聚(N-异丙基丙烯酰胺)装饰的柠檬酸盐基金纳米颗粒的水性自组装行为关键取决于介质中盐的存在。对于温度引起的可逆附聚以及基于单宁酸的氢键基逐层组装,盐的存在都极大地促进了组装行为。我们将其归因于对纳米粒子表面上剩余柠檬酸盐基团进行离子筛选和盐析效应的组合,该盐析效应增加了自组装过程中疏水相互作用的贡献。这些发现为一类有吸引力的聚合物/金杂化纳米材料提供了新的见识,这些材料可以在生物技术,催化和生物医学中找到应用。

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