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具有甘氨酸根抗衡离子的季铵盐型 Gemini 表面活性剂的吸附和聚集性质

Adsorption and aggregation properties of quaternary-ammonium-salt-based gemini surfactants with a glycinate counterion.

作者信息

Wang Shan, Iwase Hiroki, Takata Shin-Ichi, Kawai Risa, Yada Shiho, Yoshimura Tomokazu

机构信息

Department of Chemistry, Faculty of Science, Nara Women's University, Kitauoyanishi-machi, Nara 630-8506, Japan.

Neutron Science and Technology Center, Comprehensive Research Organization for Science and Society (CROSS), Tokai, Ibaraki 319-1106, Japan.

出版信息

Soft Matter. 2025 May 7;21(18):3647-3655. doi: 10.1039/d5sm00139k.

Abstract

Cationic gemini surfactants have promising bioapplications that are limited by the use of halides as counterions, which pose environmental and human health risks. This can be circumvented by using naturally occurring, highly water-soluble, and nontoxic counterions such as amino acids. In this study, we synthesized novel quaternary-ammonium-salt-based cationic gemini surfactants with glycinate as the counterion [2C(2-O-2) Gly, where is the alkyl chain length, = 10, 12, 14]. Their adsorption and aggregation properties were investigated by measuring their electrical conductivity, surface tension, and small-angle neutron scattering and compared with those of the corresponding gemini surfactants with a bromide counterion [2C(2-O-2) Br]. The relationship between the surface tension and concentration of 2C(2-O-2) Gly exhibited a unique behavior with a pronounced minimum near the critical micelle concentration. This suggests that 2C(2-O-2) Gly adsorbs densely at the air/water interface through hydrogen bonding between the amino nitrogen of the counterion and hydrogen atoms of water, as well as between the carboxylate oxygen of the counterion and hydrogen atoms of either the amino group or water. In an aqueous solution, 2C(2-O-2) Gly formed small micelles, whose structure transitioned from spherical to ellipsoidal as the concentration increased.

摘要

阳离子双子表面活性剂具有广阔的生物应用前景,但由于使用卤化物作为抗衡离子而受到限制,这些卤化物会带来环境和人类健康风险。可以通过使用天然存在、高度水溶性且无毒的抗衡离子(如氨基酸)来规避这一问题。在本研究中,我们合成了以甘氨酸盐为抗衡离子的新型季铵盐基阳离子双子表面活性剂[2C(2-O-2) Gly,其中 为烷基链长度, = 10、12、14]。通过测量其电导率、表面张力和小角中子散射研究了它们的吸附和聚集性质,并与相应的以溴化物为抗衡离子的双子表面活性剂[2C(2-O-2) Br]进行了比较。2C(2-O-2) Gly的表面张力与浓度之间的关系呈现出独特的行为,在临界胶束浓度附近有明显的最小值。这表明2C(2-O-2) Gly通过抗衡离子的氨基氮与水的氢原子之间以及抗衡离子的羧酸盐氧与氨基或水的氢原子之间的氢键作用,在空气/水界面密集吸附。在水溶液中,2C(2-O-2) Gly形成小胶束,随着浓度增加,其结构从球形转变为椭球形。

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