首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >A Retrospective: 10 Years of Oligo(phenylene-ethynylene) Electrolytes: Demystifying Nanomaterials
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A Retrospective: 10 Years of Oligo(phenylene-ethynylene) Electrolytes: Demystifying Nanomaterials

机译:回顾性:10年的寡核苷酸(苯基 - 乙炔基)电解质:脱脂纳米材料

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摘要

In this retrospective, we first reviewed the synthesis of the oligo(phenylene-ethynylene) electrolytes (OPEs) we created in the past 10 years. Since the general antimicrobial activity of these OPEs had been reported in our previous account in Langmuir, we are focusing only on the unusual spectroscopic and photophysical properties of these OPEs and their complexes with anionic scaffolds and detergents in this Feature Article. We applied classical all-atom MD simulations to study the hydrogen bonding environment in the water surrounding the OPEs with and without detergents present. Our finding is that OPEs could form a unit cluster or unit aggregate with a few oppositely charged detergent molecules, indicating that the photostability and photoreactivity of these OPEs might be considerably altered with important consequences to their activity as antimicrobials and fluorescence-based sensors. Thus, in the following sections, we showed that OPE complexes with detergents exhibit enhanced light-activated biocidal activity compared to either OPE or detergent individually. We also found that similar complexes between certain OPEs and biolipids could be used to construct sensors for the enzyme activity. Finally, the OPEs could covalently bind to microsphere surfaces to make a bactericidal surface, which is simpler and more ordered than the surface grafted from microspheres with polyelectrolytes. In the Conclusions and Prospects section, we briefly summarize the properties of OPEs developed so far and future areas for investigation.
机译:在这种回顾下,我们首先审查了我们在过去10年中创建的寡核苷酸(苯基 - 乙炔基)电解质(Opes)的合成。由于在我们之前的劳工组织的账户中报告了这些官方的一般抗微生物活性,我们仅关注这些作品的异常光谱和光物理性质及其在该特征制品中具有阴离子支架和洗涤剂的复合物。我们应用了经典的全原子MD模拟,以研究剩余的氢键环境,围绕着随附的洗涤剂的作品。我们的发现是,作品可以形成单位簇或单位骨料,其具有几个相反的带电的洗涤剂分子,表明这些作品的光稳定性和光反应性可能会随着它们作为抗微生物和荧光的传感器的重要影响而显着改变。因此,在以下部分中,我们表明,与OPE或洗涤剂单独进行了与洗涤剂相比表现出增强的光活性生物杀菌活性的OPE复合物。我们还发现某些官方和生物脂之间的类似复合物可用于构建酶活性的传感器。最后,作品可以与微球表面共价结合以制备杀菌表面,这比从微球接枝的表面比与聚电解质接枝的表面更简单且更令人令人有序。在结论和前景部分,我们简要概述了所以迄今为止开发的举办的工作的特性和未来调查地区。

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