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用于控制单层组装的超分子离子对相互作用。

Supramolecular ion-pair interactions to control monolayer assembly.

作者信息

Olivier Gloria K, Shin Donghoon, Gilbert Jonathan B, Monzon Lorena M A, Frechette Joelle

机构信息

Department of Chemical and Biomolecular Engineering, Johns Hopkins University, 3400 N. Charles St, Baltimore, Maryland 21218, USA.

出版信息

Langmuir. 2009 Feb 17;25(4):2159-65. doi: 10.1021/la803057x.

Abstract

We demonstrate that noncovalent ion-pair interactions in solution can be employed to control the molecular spacing of thiols in a self-assembled monolayer (SAM) on gold. Ion-pairs formed between the carboxylate tail-group of 16-mercaptohexadecanoic acid (MHA) and tetraalkylammonium (TAA+) hydroxide salts of various alkyl side-chain lengths remain intact during chemisorption of the thiol on gold. The resulting ion-pair SAMs exhibit a 1:1 molar ratio of MHA:TAA+ on the surface and are covalently bound to the gold surface through the thiol headgroup of MHA. We hypothesize that the incorporation of the bulky TAA+ group competes with the strong tendency of the thiols to organize into an ordered monolayer, which highlights the strength of the ion-pair complexes. The ion-pair films can be converted into a loosely packed MHA monolayer by rinsing the SAM with a solution of potassium perchlorate, which releases the TAA+ from the surface. Contact angle measurements and X-ray spectroscopy (XPS) confirm the stoichiometry and covalent attachment of the monolayers. XPS analysis and contact angle measurements indicate that the surface density of bound MHA decreases with increasing size of the TAA+ cation. These results suggest that steric hindrance created by the bulky side-chains of the TAA+ cation dictates the lateral spacing of MHA chains on the surface.

摘要

我们证明,溶液中的非共价离子对相互作用可用于控制金表面自组装单分子层(SAM)中硫醇的分子间距。16-巯基十六烷酸(MHA)的羧酸盐尾基与各种烷基侧链长度的四烷基铵(TAA+)氢氧化物盐之间形成的离子对,在硫醇化学吸附到金表面的过程中保持完整。所得的离子对SAM在表面呈现MHA:TAA+的1:1摩尔比,并通过MHA的硫醇头基与金表面共价结合。我们推测,庞大的TAA+基团的引入与硫醇形成有序单分子层的强烈趋势相互竞争,这突出了离子对配合物的强度。通过用高氯酸钾溶液冲洗SAM,可将离子对膜转化为疏松堆积的MHA单分子层,从而使TAA+从表面释放。接触角测量和X射线光谱(XPS)证实了单分子层的化学计量和共价连接。XPS分析和接触角测量表明,结合的MHA的表面密度随着TAA+阳离子尺寸的增加而降低。这些结果表明,TAA+阳离子庞大侧链产生的空间位阻决定了表面上MHA链的横向间距。

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