Courty A, Mermet A, Albouy P A, Duval E, Pileni M P
Laboratoire des Matériaux Mésoscopiques et Nanométriques, UMR CNRS 7070, Université Pierre et Marie Curie, BP 52, 4 place Jussieu, 75252 Paris Cedex 05, France.
Nat Mater. 2005 May;4(5):395-8. doi: 10.1038/nmat1366. Epub 2005 Apr 17.
Fabrication of devices from inorganic nanocrystals normally requires that they are self-organized into ordered structures. It has now been demonstrated that nanocrystals are able to self-organize in a 'supra'-crystal with a face-centred cubic (f.c.c.) structure. The physical properties of nanocrystals self-organized into compact arrays are quite different from those of both isolated nanocrystals and the bulk phase. The collective optical and magnetic properties of these nanocrystal assemblies are governed mainly by dipolar interactions. Here, we show that nanocrystals vibrate coherently when they are self-organized in f.c.c. supra-crystals. Hence, a phase relation exists between the vibrations of all of the nanocrystals in a supra-crystal. This vibrational coherence can be observed by a substantial change of the quadrupolar low-frequency Raman scattering peak. Although a change in electronic transport properties has previously been observed on self-organization of silver nanocrystals, vibrational coherence represents the first intrinsic property of f.c.c. supra-crystals.
由无机纳米晶体制造器件通常要求它们自组装成有序结构。现已证明,纳米晶体能够自组装成具有面心立方(f.c.c.)结构的“超”晶体。自组装成紧密阵列的纳米晶体的物理性质与孤立纳米晶体和块体相的物理性质有很大不同。这些纳米晶体组件的集体光学和磁性性质主要由偶极相互作用决定。在此,我们表明,当纳米晶体在f.c.c.超晶体中自组装时会发生相干振动。因此,超晶体中所有纳米晶体的振动之间存在相位关系。这种振动相干性可以通过四极低频拉曼散射峰的显著变化来观察。尽管此前在银纳米晶体自组装时已观察到电子输运性质的变化,但振动相干性代表了f.c.c.超晶体的首个固有性质。