Laboratoire de Physico-chimie des Polymères et Milieux Dispersés, UMR7615 UPMC-ESPCI-CNRS, 10 rue Vauquelin, 75231 Paris Cedex 05, France.
Langmuir. 2010 Jul 20;26(14):12321-9. doi: 10.1021/la1015669.
Two amino-terminated amphiphilic copolymers, M600 and M1000, with different ethylene oxide to propylene oxide EO/PO ratios, 1/9 and 19/3, respectively, were coupled by thioctic acid, which allows an excellent affinity with gold surface. Then, amphiphilic thermally responsive gold nanoparticles (AuNPs) were prepared either by ligands exchange on precursor gold nanoparticles or by direct reduction of gold source in presence of stabilizing copolymers. The as-obtained AuNPs are monodisperse with a size varying from 2 to 17 nm depending on the synthesis used. The main parameters controlling the AuNPs assemblies were identified: the ethylene oxide to propylene oxide ratio in the polymer corona, the ionic strength of the solution, and the curvature of AuNPs. An interesting result is the possibility to tune the aggregation temperature from 8 to 15 degrees C of AuNPs coated by the same polymer only by changing the curvature of the AuNPs from 17 to 2 nm. This temperature change versus the curvature of the nanoparticle is ascribed to the decrease in hydration volume per hydrophilic group in the corona due to the change of the polymer chain conformation with changing the particle size. Moreover, one unique aggregation temperature between 12 and 60 degrees C can be also obtained by mixing copolymers with different EO/PO ratios. Then, the corona, constituted by a mixture of polymers, behaves as a corona composed by an average statistic copolymer with the intermediate composition.
两种具有不同的环氧乙烷/环氧丙烷 EO/PO 比例(分别为 1/9 和 19/3)的氨基末端两亲性共聚物 M600 和 M1000 通过硫辛酸偶联,硫辛酸与金表面具有极好的亲和力。然后,通过在金纳米颗粒前驱体上进行配体交换或在稳定共聚物存在下直接还原金源,制备了两亲性热敏金纳米颗粒(AuNPs)。所获得的 AuNPs 为单分散的,尺寸从 2 到 17nm 不等,具体取决于所使用的合成方法。确定了控制 AuNPs 组装的主要参数:聚合物冠层中的环氧乙烷/环氧丙烷比例、溶液的离子强度以及 AuNPs 的曲率。一个有趣的结果是,仅通过改变 AuNPs 的曲率从 17nm 到 2nm,就可以将涂覆相同聚合物的 AuNPs 的聚集温度从 8°C 调节到 15°C。这种温度变化与纳米颗粒曲率之间的关系归因于由于聚合物链构象随粒径变化而改变,亲水基团的水合体积每单位亲水基团的减少。此外,通过混合具有不同 EO/PO 比例的共聚物,还可以获得 12 到 60°C 之间的独特聚集温度。然后,由混合物组成的 corona 表现为具有中间组成的平均统计共聚物组成的 corona。