Crosslinked organosulfur-based self-assembled monolayers: formation and applications

Soft science Pub Date : 2022-01-01 DOI:10.20517/ss.2022.04
Tianlang Yu, Maria D. Marquez, H. Tran, T. Lee
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引用次数: 2

Abstract

Self-assembled monolayers (SAMs) have found use in diverse applications that range from corrosion prevention to biosensing. However, for all of these applications, stability remains a key challenge for the utilization of SAMs. Over the last decade, intermolecular crosslinking as a method to enhance the thermal and chemical stability of SAMs has attracted increased attention from scientists and engineers. As such, this review introduces a variety of crosslinked SAMs: (1) aromatic thiol-based SAMs; (2) olefinic- and acetylenic-based alkanethiols; (3) other aliphatic alkanethiols; (4) silane-based alkanethiols; (5) boronic acid-based alkanethiols; and (6) crosslinked SAMs realized by hydrogen bonding. By offering insight into the structure-application relationships of the aforementioned SAMs, this review seeks to inspire researchers toward the development of new classes of SAMs with enhanced stabilities and working lifetimes.
交联有机硫基自组装单层:形成和应用
自组装单层膜(SAMs)已经在从防腐到生物传感的各种应用中得到了应用。然而,对于所有这些应用程序,稳定性仍然是使用sam的一个关键挑战。在过去的十年中,分子间交联作为一种提高sam热稳定性和化学稳定性的方法越来越受到科学家和工程师的关注。因此,本文介绍了各种交联地对空导弹:(1)芳香硫醇基地对空导弹;(2)烯烃基和乙炔基烷烃硫醇;(三)其他脂肪族烷烃硫醇;(4)硅烷基烷硫醇;(5)硼酸基烷硫醇;(6)氢键实现的交联sam。通过对上述地对空导弹的结构-应用关系的深入研究,本综述旨在激励研究人员开发具有更高稳定性和使用寿命的新型地对空导弹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.10
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0.00%
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