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L-酪氨酸在 Ag(111)表面:氨基酸二维两性离子键合方案的普适性?

L-tyrosine on Ag(111): universality of the amino acid 2D zwitterionic bonding scheme?

机构信息

Department of Chemistry, The University of British Columbia, Vancouver, British Columbia V6T 1Z4, Canada.

出版信息

ACS Nano. 2010 Feb 23;4(2):1218-26. doi: 10.1021/nn901669p.

Abstract

We present a combined study of the adsorption and ordering of the l-tyrosine amino acid on the close-packed Ag(111) noble-metal surface in ultrahigh vacuum by means of low-temperature scanning tunneling microscopy (STM), X-ray photoelectron spectroscopy (XPS) and near-edge X-ray absorption fine structure (NEXAFS) spectroscopy. On this substrate the biomolecules self-assemble at temperatures exceeding 320 K into linear structures primarily following specific crystallographic directions and evolve with larger molecular coverage into two-dimensional nanoribbons which are commensurate with the underlying atomic lattice. Our high resolution topographical STM data reveal noncovalent molecular dimerization within the highly ordered one-dimensional nanostructures, which recalls the geometrical pattern already seen in the l-methionine/Ag(111) system and supports a universal bonding scheme for amino acids on smooth and unreactive metal surfaces. The molecules desorb for temperatures above 350 K, indicating a relatively weak interaction between the molecules and the substrate. XPS measurements reveal a zwitterionic adsorption, whereas NEXAFS experiments show a tilted adsorption configuration of the phenol moiety. This enables the interdigitation between aromatic side chains of adjacent molecules via parallel-displaced pi-pi interactions which, together with the hydrogen-bonding capability of the hydroxyl functionality, presumably mediates the emergence of the self-assembled supramolecular nanoribbons.

摘要

我们通过低温扫描隧道显微镜(STM)、X 射线光电子能谱(XPS)和近边 X 射线吸收精细结构(NEXAFS)光谱学,对 l-酪氨酸氨基酸在超高真空下的吸附和有序排列进行了综合研究。在这个基底上,生物分子在超过 320K 的温度下自组装成线性结构,主要沿着特定的晶体学方向,并随着更大的分子覆盖度演变成与底层原子晶格相匹配的二维纳米带。我们的高分辨率形貌 STM 数据揭示了高度有序的一维纳米结构中分子的非共价二聚体,这让人联想到在 l-蛋氨酸/Ag(111)系统中已经看到的几何模式,并支持氨基酸在光滑和非反应性金属表面上的通用键合模式。分子在高于 350K 的温度下解吸,表明分子与基底之间的相互作用相对较弱。XPS 测量显示出两性离子吸附,而 NEXAFS 实验则显示出酚部分的倾斜吸附构型。这使得相邻分子的芳族侧链能够通过平行位移的 pi-pi 相互作用进行穿插,加上羟基官能团的氢键能力,可能介导了自组装超分子纳米带的出现。

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