Courty A, Henry A-I, Goubet N, Pileni M-P
Laboratoire des Matériaux Mesoscopiques et Nanométriques (LM2N), UMR CNRS 7070, Université Pierre et Marie Curie, bât F, BP 52, 4 place Jussieu, 75252 Paris Cedex 05, France.
Nat Mater. 2007 Nov;6(11):900-7. doi: 10.1038/nmat2004. Epub 2007 Sep 16.
Nanocrystal organizations represent a new generation of materials with specific properties compared with those of isolated nanocrystals and of the bulk material. Here, we present the first intrinsic crystalline growth properties of highly ordered mono- and multilayers of 5 nm silver nanocrystals. Triangular single crystals with face-centred-cubic structures are obtained by annealing the ordered nanocrystals under atmospheric pressure at 50 degrees C. The triangles are mixed with well-crystallized coalesced particles of various shapes. Their size depends on the initial nanocrystal ordering range on the substrate, which is local on amorphous carbon and highly extended on highly oriented pyrolitic graphite (HOPG). Hence, the single-crystal size is larger on HOPG than on amorphous carbon. These observations show that the crystalline growth properties of silver nanocrystals can be tailored by controlling their organization. Furthermore, on HOPG an epitaxial orientation of the triangles is observed.
与孤立的纳米晶体和块状材料相比,纳米晶体组织代表了具有特定性质的新一代材料。在此,我们展示了5纳米银纳米晶体高度有序的单层和多层的首次本征晶体生长特性。通过在50摄氏度的大气压下对有序纳米晶体进行退火处理,获得了具有面心立方结构的三角形单晶。这些三角形与各种形状的结晶良好的聚结颗粒混合在一起。它们的尺寸取决于基底上初始纳米晶体的有序范围,该范围在非晶碳上是局部的,而在高度取向的热解石墨(HOPG)上则高度扩展。因此,HOPG上的单晶尺寸比非晶碳上的大。这些观察结果表明,银纳米晶体的晶体生长特性可以通过控制其组织来定制。此外,在HOPG上观察到了三角形的外延取向。