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RNA介导的金表面钯纳米颗粒的合成。

RNA-mediated synthesis of palladium nanoparticles on Au surfaces.

作者信息

Liu Dage, Gugliotti Lina A, Wu Tong, Dolska Magda, Tkachenko Alexander G, Shipton Mathew K, Eaton Bruce E, Feldheim Daniel L

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

Langmuir. 2006 Jun 20;22(13):5862-6. doi: 10.1021/la060426c.

Abstract

RNA catalysts for the shape-controlled synthesis of Pd particles from the precursor complex trisdibenzylideneacetone dipalladium ([Pd2(DBA)3] were recently discovered in our laboratory (J. Am. Chem. Soc. 2005, 127, 17814-17818). In the work described here, RNA codes for hexagonal Pd platelets and Pd cubes were covalently immobilized on gold surfaces and evaluated for their activity toward particle synthesis. When coupled to gold via oligoethylene glycol linkers, both RNA sequences were able to catalyze the formation of Pd particles with the same shape control previously observed in solution. For low surface coverages, the average distance between RNA molecules on the surface was estimated at ca. 300 nm, yet large (e.g., dimensions of hundreds of nanometers) Pd hexagons and cubes still formed. This surprising result suggests that a single RNA molecule may be sufficient for nucleating and controlling the shapes of these particles. Finally, the use of surface-bound RNA as a tool for directing the orthogonal synthesis of materials on surfaces was demonstrated. Patterning the RNA code for Pd hexagons next to the code for Pd cubes, followed by incubation in a solution containing [Pd2(DBA)3], resulted in the spontaneous formation of spatially distinct spots of hexagonal and cubic particles.

摘要

我们实验室最近发现了一种RNA催化剂,可用于从前体配合物三(二亚苄基丙酮)二钯([Pd2(DBA)3])中进行形状可控的钯颗粒合成(《美国化学会志》2005年,第127卷,17814 - 17818页)。在此描述的工作中,用于合成六边形钯片和钯立方体的RNA编码被共价固定在金表面,并评估它们对颗粒合成的活性。当通过低聚乙二醇连接子与金偶联时,这两种RNA序列都能够催化形成具有先前在溶液中观察到的相同形状控制的钯颗粒。对于低表面覆盖率,表面上RNA分子之间的平均距离估计约为300纳米,但仍然形成了大尺寸(例如,数百纳米尺寸)的钯六边形和立方体。这一惊人结果表明,单个RNA分子可能足以使这些颗粒成核并控制其形状。最后,证明了使用表面结合的RNA作为在表面上指导材料正交合成的工具。在钯立方体编码旁边对钯六边形的RNA编码进行图案化,然后在含有[Pd2(DBA)3]的溶液中孵育,导致自发形成六边形和立方体颗粒的空间上不同的斑点。

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