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酯基双子表面活性剂的表面及抗菌性能

Surface and Antimicrobial Properties of Ester-Based Gemini Surfactants.

作者信息

Kowalczyk Iwona, Szulc Adrianna, Koziróg Anna, Komasa Anna, Brycki Bogumił

机构信息

Department of Bioactive Products, Faculty of Chemistry, Adam Mickiewicz University Poznan, 61-614 Poznan, Poland.

Institute of Fermentation Technology and Microbiology, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, 90-530 Lodz, Poland.

出版信息

Molecules. 2025 Jun 19;30(12):2648. doi: 10.3390/molecules30122648.

Abstract

Cationic surfactants, accounting for approximately 7% of the global surfactant market, are widely used in applications such as fabric softeners, biocides, and corrosion inhibitors. Recently, gemini surfactants-comprising two amphiphilic units linked by a spacer-have attracted significant interest due to their superior surface activity, lower critical micelle concentrations, and strong antimicrobial properties. However, their poor biodegradability, resulting from their complex molecular structure, has raised environmental concerns. To address this, researchers have developed ester-based gemini surfactants incorporating biodegradable bonds. This study aimed to investigate the relationship between the structure of ester-based gemini surfactants (hydrophobic chain length and spacer type) and their antimicrobial activity against bacteria and fungi. Three series of compounds featuring different functional groups in the spacer were synthesized, along with a trimeric surfactant for comparative purposes. The results demonstrated that both the hydrophobic chain length and the presence of additional cationic groups significantly influence the CMC and antimicrobial performance. Quantum mechanical calculations were also performed to search for correlations between electronic properties and chemical reactivity of compounds. These findings highlight that ester-based gemini surfactants combine high surface and antimicrobial activity with the potential for improved biodegradability, making them promising candidates for use in environmentally friendly applications.

摘要

阳离子表面活性剂约占全球表面活性剂市场的7%,广泛应用于织物柔软剂、杀菌剂和缓蚀剂等领域。近年来,双子表面活性剂(由两个通过间隔基连接的两亲单元组成)因其卓越的表面活性、较低的临界胶束浓度和强大的抗菌性能而备受关注。然而,其复杂的分子结构导致生物降解性较差,引发了环境问题。为解决这一问题,研究人员开发了含有可生物降解键的酯基双子表面活性剂。本研究旨在探讨酯基双子表面活性剂的结构(疏水链长度和间隔基类型)与它们对细菌和真菌的抗菌活性之间的关系。合成了三个系列在间隔基中具有不同官能团的化合物,以及一种三聚体表面活性剂用于比较。结果表明,疏水链长度和额外阳离子基团的存在均显著影响临界胶束浓度和抗菌性能。还进行了量子力学计算以寻找化合物电子性质与化学反应性之间的相关性。这些发现突出表明,酯基双子表面活性剂兼具高表面活性和抗菌活性以及提高生物降解性的潜力,使其成为环境友好型应用的有前途的候选者。

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