Department of Materials Science and Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 305-701, Republic of Korea.
Phys Chem Chem Phys. 2012 Feb 28;14(8):2791-6. doi: 10.1039/c2cp23547a. Epub 2012 Jan 23.
We studied the structural evolution of a 270-atom Ag-Au bimetallic nanoparticle (2 nm in size) with varying composition and temperature. The liquid to solid transition region and the solid-state structure were investigated using molecular dynamics simulations. To determine the exact transition temperature region, we applied the mean square displacement and structure deviation methods, as well as the generally used caloric curve of potential energy versus temperature. The results showed that a complete solid-solution phase diagram of the binary Ag-Au system was obtained. Irrespective of the composition, the freezing temperature of a Ag-Au bimetallic nanoparticle was lower than that of the bulk state by a margin of several hundred degrees, and three different solid-state structures are proposed in relation to the Au composition. Our phase diagram offers guidance for the application of Ag-Au nanoparticles.
我们研究了具有不同组成和温度的 270 个原子 Ag-Au 双金属纳米颗粒(2nm 大小)的结构演变。使用分子动力学模拟研究了液-固转变区域和固态结构。为了确定确切的转变温度区域,我们应用了均方位移和结构偏差方法,以及通常使用的势能与温度的热能曲线。结果表明,获得了二元 Ag-Au 系统的完整固溶相图。无论组成如何,Ag-Au 双金属纳米颗粒的冻结温度都比块状状态低几百摄氏度,并且根据 Au 组成提出了三种不同的固态结构。我们的相图为 Ag-Au 纳米颗粒的应用提供了指导。