Liu Xiang, Basu Amit
Department of Chemistry, Brown University, Providence, Rhode Island 02912, USA.
Langmuir. 2008 Oct 7;24(19):11169-74. doi: 10.1021/la8017985. Epub 2008 Aug 27.
This paper describes the preparation of cross-linked polynorbornene coated gold nanoparticles. The polymer was grown radially from the particle surface using a ring opening metathesis polymerization of norbornene and an electrophilic norbornene ester, which was cross-linked using a variety of diamines. The stability of the cross-linked nanoparticles toward oxidative etching by cyanide was evaluated. The rate of etching decreases as diamines with fewer degrees of conformational freedom are used as cross-linkers. The distance of the cross-linking block from the nanoparticle surface was systematically varied. Nanoparticles with the cross-linked block furthest from the surface were etched most slowly. This is suggested to arise as a result of the polymers adopting a mushroom conformation when the cross-linking block is close to the particle surface, while more distal cross-linking results in more rigid polymer chains that are less permeable to the cyanide etchant. These results provide new insight into how fine-tuning the polymer cross-linking architecture can modulate nanoparticle stability.
本文描述了交联聚降冰片烯包覆金纳米颗粒的制备。该聚合物通过降冰片烯和亲电降冰片烯酯的开环易位聚合反应从颗粒表面径向生长,并使用多种二胺进行交联。评估了交联纳米颗粒对氰化物氧化蚀刻的稳定性。随着构象自由度较低的二胺用作交联剂,蚀刻速率降低。交联嵌段与纳米颗粒表面的距离被系统地改变。交联嵌段离表面最远的纳米颗粒蚀刻得最慢。这被认为是由于当交联嵌段靠近颗粒表面时聚合物呈现蘑菇构象,而更远端的交联导致更刚性的聚合物链,对氰化物蚀刻剂的渗透性更低。这些结果为微调聚合物交联结构如何调节纳米颗粒稳定性提供了新的见解。