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烷基化聚乙烯亚胺对金纳米板形成的影响。

Effects of alkylated polyethylenimines on the formation of gold nanoplates.

作者信息

Chen Chi-Chang, Hsu Chyuan-Heng, Kuo Ping-Lin

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan 70101, ROC.

出版信息

Langmuir. 2007 Jun 5;23(12):6801-6. doi: 10.1021/la700377y. Epub 2007 May 5.

Abstract

Mono- and dialkylated polyethylenimines (PEI-1R and PEI-2R) were used for the facile synthesis of gold nanoplates with a preferential growth direction along the Au (111) plane. It was found that polymer hydrophobicity greatly influenced the nanoparticle morphology. PEI-1R in the acidic aqueous solution with a smaller degree of alkylation effectively adsorbed on the surface of gold nanoplates with the protonated ethylenimine groups rather than being aggregated in the bulk aqueous phase to form polymer aggregates as compared to the situation for PEI-2R. Loose alkylated PEI aggregates in acidic solution promote the formation of gold nanoplates by means of the anion-induced cation adsorption on certain crystallographic facets during the growth of gold particles. Without incorporating alkyl groups, however, the TEM image of the gold colloid solution with PEI showed only the formation of spherical gold nanoparticles by the same process. The morphology of gold nanoparticles was tuned not only by varying the degree of alkylation of PEI samples but also by the solvent type and pH value of the solution. By utilizing differently alkylated PEIs as reducing agents, this facile synthetic procedure can selectively result in the formation of gold nanoplates at room temperature without an extra inducing process.

摘要

单烷基化和二烷基化聚乙烯亚胺(PEI-1R和PEI-2R)被用于简便合成沿Au(111)平面具有优先生长方向的金纳米片。研究发现,聚合物疏水性对纳米颗粒形态有很大影响。与PEI-2R的情况相比,在烷基化程度较小的酸性水溶液中的PEI-1R,其质子化的乙撑亚胺基团有效地吸附在金纳米片表面,而不是在本体水相中聚集形成聚合物聚集体。酸性溶液中松散的烷基化PEI聚集体在金颗粒生长过程中通过阴离子诱导的阳离子在某些晶面上的吸附促进了金纳米片的形成。然而,在不引入烷基的情况下,含有PEI的金胶体溶液的透射电镜图像显示,通过相同过程仅形成了球形金纳米颗粒。金纳米颗粒的形态不仅可以通过改变PEI样品的烷基化程度来调节,还可以通过溶液的溶剂类型和pH值来调节。通过使用不同烷基化的PEI作为还原剂,这种简便的合成方法可以在室温下选择性地导致金纳米片的形成,而无需额外的诱导过程。

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