IF 4.8 2区 化学 Q2 CHEMISTRY, PHYSICAL
Daria M. Cegiełka*, Łukasz Bodek, Michael Zharnikov and Piotr Cyganik*, 
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引用次数: 0

摘要

自组装单分子层(SAM)被广泛用于表面和界面的分子工程,这就要求对其结构和性质进行控制。这方面的一个重要工具就是所谓的奇偶效应,它利用了 SAM 结构对构成 SAM 构建分子骨架的构筑块数量奇偶性的依赖性。尽管这些效应会影响对 SAM 应用至关重要的参数,但到目前为止,这些效应主要是在硬币金属(金和银)上进行研究的。在这里,我们利用联苯取代羧酸(BPnCOO,n = 0-4)系列,证明了在与技术相关的自然氧化铝表面(代表其他氧化物表面)上也会出现结构奇偶行为,偶数单层比奇数类似物表现出更高的堆积密度和更低的分子倾角。尽管发生了这些结构变化,但 SAM 解吸能几乎保持不变,处于较高值(∼1.5 eV),这使得 BPnCOO/AlOx 成为一种很有希望应用于有机电子产品的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Odd–Even Effects in the Structure and Thermal Stability of Carboxylic Acid Anchored Monolayers on Naturally Oxidized Aluminum Surface

Self-assembled monolayers (SAMs) are broadly used for molecular engineering of surfaces and interfaces, which demands control over their structure and properties. An important tool in this context is the so-called odd–even effects exploiting the dependence of the SAM structure on the parity of the number of building blocks forming the backbone of SAM-building molecules. Even though these effects influence parameters crucial for SAM applications, they have been mainly studied on coinage metals (Au and Ag) until now. Here, using the series of biphenyl-substituted carboxylic acids (BPnCOO, n = 0–4), we show that structural odd–even behavior occurs as well on technologically relevant surface of naturally oxidized aluminum (representative of other oxide surfaces), with the even-numbered monolayers exhibiting higher packing density and lower molecular inclination than the odd-numbered analogs. Despite these structural changes, the SAM desorption energy remains nearly constant at a high value (∼1.5 eV) making BPnCOO/AlOx a promising system for organic electronics applications.

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来源期刊
The Journal of Physical Chemistry Letters
The Journal of Physical Chemistry Letters CHEMISTRY, PHYSICAL-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
9.60
自引率
7.00%
发文量
1519
审稿时长
1.6 months
期刊介绍: The Journal of Physical Chemistry (JPC) Letters is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, chemical physicists, physicists, material scientists, and engineers. An important criterion for acceptance is that the paper reports a significant scientific advance and/or physical insight such that rapid publication is essential. Two issues of JPC Letters are published each month.
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