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二维超晶格中自组装的无机纳米晶体:物理和化学性质有多灵活?

Inorganic nanocrystals self ordered in 2D superlattices: how versatile are the physical and chemical properties?

机构信息

Laboratoire LM2N, Université P. et M. Curie (Paris VI), BP 52, 4 Place Jussieu, F-75231 Paris Cedex 05, France.

出版信息

Phys Chem Chem Phys. 2010 Oct 14;12(38):11821-35. doi: 10.1039/c0cp00456a. Epub 2010 Aug 25.

Abstract

Here we point out some parameters, such as substrate roughness, deposition modes, alkyl chain length of the coating agents and solvent used to disperse the nanocrystals, that play a role in the control of nanocrystal ordering in 2D superlattices. The interparticle distances do not follow the rules which imply that they are controlled by the length of the alkyl chain used as coating agent. The solvent in which the nanocrystals are dispersed is a key parameter. From DDA simulations it is observed that collective optical properties of 5 nm noble nanoparticles self-organized in a 2D hexagonal planar array markedly differ with the nanomaterial used (Au and Ag). There is no splitting of the surface plasmon resonance observed for Au nanoparticles, whereas for Ag nanoparticles, with a similar geometry, a splitting is observed when decreasing the interparticle spacing d/(2R) to around one nanoparticle radius due to the strengthening of the dipolar interactions between the nanoparticles. Here it is shown by using AMB-1 magnetostatic bacteria that the change in the hysteresis loop when the nanoparticles are aligned is preferentially due to induced dipolar interactions rather than to the orientation of the easy axes. Intrinsic collective chemical properties due to the nanocrystals ordering are presented.

摘要

在这里,我们指出了一些参数,如衬底粗糙度、沉积模式、涂层剂的烷基链长度和用于分散纳米晶体的溶剂,它们在控制二维超晶格中纳米晶体的有序排列中起着重要作用。颗粒间的距离并不遵循规则,这意味着它们受到用作涂层剂的烷基链长度的控制。分散纳米晶体的溶剂是一个关键参数。从 DDA 模拟中可以观察到,在二维六方平面阵列中自组织的 5nm 贵金属纳米粒子的集体光学性质明显不同于所使用的纳米材料(Au 和 Ag)。对于 Au 纳米粒子,没有观察到表面等离子体共振的分裂,而对于 Ag 纳米粒子,具有相似的几何形状,当将颗粒间的间距 d/(2R)减小到一个纳米粒子半径左右时,由于纳米粒子之间的偶极相互作用增强,观察到分裂。在这里,我们使用 AMB-1 静磁细菌表明,当纳米粒子对齐时,滞后回线的变化主要是由于诱导偶极相互作用而不是易轴的取向。呈现了由于纳米晶体有序排列而产生的固有集体化学性质。

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