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有机表面的金属化:噻唑上的 Pd。

Metallization of organic surfaces: Pd on thiazole.

机构信息

Institute of Electrochemistry, University of Ulm, 89069 Ulm, Germany.

出版信息

Langmuir. 2010 Apr 6;26(7):4738-42. doi: 10.1021/la1000232.

Abstract

Results from electrochemical studies, in situ STM, and ex situ angle-resolved XPS on self-assembled monolayers (SAMs) of thiazole on Au(111) are reported for the first time. Although STM seems to indicate a low density of molecules organized in small ordered domains, a quantitative chemical analysis of the sample surface by XPS clearly points toward the formation of a densely packed molecular layer. The stability of the thiazole SAM against reductive desorption is found to be very comparable with that for thiol-SAMs on gold. This results from the formation of Au-S bonds between the molecules and their support as evidenced by XPS, thereby rebuting speculations that the ring nitrogen is responsible for the attachment of such molecules to gold surfaces. Consequently, the N-atoms terminating the molecular layer are available as active sites for the complexation with Pd ions thereby allowing the deposition of Pd islands with monatomic height on top of the thiazole SAM. The importance of such studies for metal-molecule interconnections is briefly addressed.

摘要

首次报道了噻唑在 Au(111)上自组装单层 (SAM) 的电化学研究、原位 STM 和非原位角度分辨 XPS 的结果。尽管 STM 似乎表明分子以小的有序畴的低密度组织,但 XPS 对样品表面的定量化学分析清楚地表明形成了致密的分子层。噻唑 SAM 对还原解吸的稳定性被发现与金上的硫醇-SAMs 非常可比。这是由于分子与其载体之间形成了 Au-S 键,正如 XPS 所证明的那样,从而反驳了这样的分子与金表面的连接是由环氮原子负责的猜测。因此,终止分子层的 N 原子可用作与 Pd 离子络合的活性位点,从而允许在噻唑 SAM 顶部沉积具有单原子高度的 Pd 岛。简要讨论了此类研究对于金属-分子互连的重要性。

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