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基于氨甲腈的薄膜沉积:动力学、化学和形态学。

Deposition of Aminomalononitrile-Based Films: Kinetics, Chemistry, and Morphology.

机构信息

CSIRO Manufacturing , Research Way , Clayton 3168 , Victoria , Australia.

Monash University, Monash Institute of Pharmaceutical Sciences , 381 Royal Parade , Parkville 3052 , Victoria , Australia.

出版信息

Langmuir. 2019 Jul 30;35(30):9896-9903. doi: 10.1021/acs.langmuir.9b01497. Epub 2019 Jul 17.

Abstract

In the last few years, the development of versatile coating chemistries has become a hot topic in surface science after the discovery that catecholamines can lead to conformal coatings upon oxidation from aqueous solutions. Recently, it was found that aminomalononitrile (AMN), a molecule implicated in the appearance of life on earth, is an excellent prototype of novel material-independent surface functionalizing agents leading to conformal and biocompatible coatings in a simple and direct chemical process from aqueous solutions. So far, very little insight has been gained regarding the mechanisms underlying coating deposition. In this paper, we show that the chemical evolution of AMN film deposition under slightly basic conditions is different in solution and on silica. Thereon, the coating proceeds via a nucleation process followed by further deposition of islands which evolve to produce nitrogen-rich superhydrophilic fibrillar structures. Additionally, we show that AMN-based material can form films at the air-solution interface from unshaken solutions. These results open new vistas into the chemistry of HCN-derived species of potential relevance in materials science.

摘要

在过去的几年中,人们发现儿茶酚胺可以在氧化后从水溶液中形成保形涂层,因此,多功能涂层化学的发展成为表面科学的热门话题。最近,人们发现氨甲丙二腈(AMN)是一种与地球上生命出现有关的分子,它是一种极好的新型材料独立表面功能化试剂的原型,可通过简单直接的化学过程从水溶液中形成保形和生物相容的涂层。到目前为止,人们对涂层沉积的机制知之甚少。在本文中,我们表明,在弱碱性条件下,AMN 薄膜沉积的化学演变在溶液中和在二氧化硅上是不同的。在溶液中,涂层通过成核过程进行,然后进一步沉积岛状结构,这些岛状结构演变成富含氮的超亲水纤维状结构。此外,我们还表明,基于 AMN 的材料可以从未摇动的溶液在空气-溶液界面形成薄膜。这些结果为潜在在材料科学中有意义的 HCN 衍生物种的化学开辟了新的视野。

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