Klajn Rafal, Bishop Kyle J M, Fialkowski Marcin, Paszewski Maciej, Campbell Christopher J, Gray Timothy P, Grzybowski Bartosz A
Department of Chemical and Biological Engineering, Northwestern University, Evanston, IL 60208, USA.
Science. 2007 Apr 13;316(5822):261-4. doi: 10.1126/science.1139131.
Deformable, spherical aggregates of metal nanoparticles connected by long-chain dithiol ligands self-assemble into nanostructured materials of macroscopic dimensions. These materials are plastic and moldable against arbitrarily shaped masters and can be thermally hardened into polycrystalline metal structures of controllable porosity. In addition, in both plastic and hardened states, the assemblies are electrically conductive and exhibit Ohmic characteristics down to approximately 20 volts per meter. The self-assembly method leading to such materials is applicable both to pure metals and to bimetallic structures of various elemental compositions.
由长链二硫醇配体连接的金属纳米颗粒形成的可变形球形聚集体自组装成宏观尺寸的纳米结构材料。这些材料具有可塑性,可根据任意形状的模具进行塑形,并可通过热硬化形成孔隙率可控的多晶金属结构。此外,在塑性和硬化状态下,这些组件都具有导电性,并且在每米约20伏的电压下表现出欧姆特性。导致这种材料的自组装方法既适用于纯金属,也适用于各种元素组成的双金属结构。