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无电沉积法在介孔二氧化硅嵌段共聚物薄膜中生长银纳米颗粒。

Electroless growth of silver nanoparticles into mesostructured silica block copolymer films.

机构信息

Laboratoire des Multimatériaux et Interfaces, UMR CNRS 5615, Université Claude Bernard Lyon 1, 43 Bd 11 novembre 1918, 69622 Villeurbanne, France.

出版信息

Langmuir. 2010 Jun 1;26(11):8729-36. doi: 10.1021/la904491v.

DOI:10.1021/la904491v
PMID:20201484
Abstract

Silver nanoparticles and silver nanowires have been grown inside mesostructured silica films obtained from block copolymers using two successive reduction steps: the first one involves a sodium borohydride reduction or a photoreduction of silver nitrate contained in the film, and the second one consists of a silver deposit on the primary nanoparticles, carried out by silver ion solution reduction with hydroxylamine chloride. We have demonstrated that the F127 block copolymer ((PEO)(106)(PPO)(70)(PEO)(106)), "F type", mesostructured silica film is a suitable "soft" template for the fabrication of spherical silver nanoparticles arrays. Silver spheres grow from 7 to 11 nm upon the second reduction step. As a consequence, a red shift of the surface plasmon resonance associated with metallic silver has been observed and attributed to plasmonic coupling between particles. Using a P123 block copolymer ((PEO)(20)(PPO)(70)(PEO)(20)), "P type", mesostructured silica film, we have obtained silver nanowires with typical dimension of 10 nm x 100 nm. The corresponding surface plasmon resonance is blue-shifted. The hydroxylamine chloride treatment appears to be efficient only when a previous chemical reduction is performed, assuming that the first sodium borohydride reduction induces a high concentration of silver nuclei in the first layer of the porous silica (film/air interface), which explains their reactivity for further growth.

摘要

银纳米粒子和银纳米线已在介孔二氧化硅膜中生长,这些介孔二氧化硅膜是通过两步连续还原过程从嵌段共聚物中获得的:第一步涉及硼氢化钠还原或银纳米粒子在膜中的光还原硝酸银,第二步是在初级纳米粒子上进行银沉积,通过银离子溶液与盐酸羟胺还原进行。我们已经证明,F127 嵌段共聚物((PEO)(106)(PPO)(70)(PEO)(106)),“F 型”,介孔二氧化硅膜是用于制造球形银纳米粒子阵列的合适的“软”模板。在第二步还原后,银球从 7nm 生长到 11nm。因此,观察到与金属银相关的表面等离子体共振的红移,并归因于颗粒之间的等离子体耦合。使用 P123 嵌段共聚物((PEO)(20)(PPO)(70)(PEO)(20)),“P 型”,介孔二氧化硅膜,我们获得了典型尺寸为 10nm x 100nm 的银纳米线。相应的表面等离子体共振发生蓝移。只有在进行先前的化学还原时,盐酸羟胺处理才有效,假设第一步硼氢化钠还原在多孔二氧化硅的第一层(膜/空气界面)中诱导了高浓度的银核,这解释了它们对进一步生长的反应性。

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