Wheat protein-derived surfactants: Synthesis and properties

IF 1.6 4区 工程技术 Q3 CHEMISTRY, APPLIED
Wanchun Li, Jie Shen, Hujun Xu
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Abstract

Green surfactants produced from peptides and their derivatives have excellent surface chemistry and application properties. A mild, biocompatible, and rapidly biodegradable green surfactant, potassium N-lauroyl wheat peptide (PLW), was synthesized by an acylation method in the aqueous phase with lauryl chloride and wheat oligopeptide as starting materials. Furthermore, the isoelectric point, equilibrium surface tension, dynamic surface tension, micellar aggregation behavior, foaming, and irritating properties of PLW were studied. Wheat oligopeptides were discovered to have the greatest glutamic acid content, accounting for 30.92% of the overall amino acid composition. The findings revealed that the protonation and ionization behavior of PLW was pH dependent. At pH 8.5, water's surface tension was lowered to 32.1 mN/m−1. At high concentrations and pH, PLW formed large aggregates in solution, causing the adsorption behavior of PLW molecules to shift from diffusion-controlled adsorption to mixed kinetic adsorption, with PLW exhibiting great surface activity. Furthermore, PLW has good foaming properties and is non-irritating. As a result, PLW is predicted to become widely employed in the field of household chemicals.

小麦蛋白衍生表面活性剂:合成与特性
由多肽及其衍生物制成的绿色表面活性剂具有优异的表面化学和应用特性。本研究以月桂酰氯和小麦低聚肽为起始原料,采用酰化法在水相中合成了一种性质温和、生物相容性好且可快速生物降解的绿色表面活性剂--N-月桂酰小麦肽钾盐(PLW)。此外,还研究了 PLW 的等电点、平衡表面张力、动态表面张力、胶束聚集行为、发泡和刺激特性。研究发现,小麦低聚肽的谷氨酸含量最高,占整个氨基酸组成的 30.92%。研究结果表明,PLW 的质子化和电离行为与 pH 值有关。在 pH 值为 8.5 时,水的表面张力降低到 32.1 mN/m-1。在高浓度和高 pH 值条件下,聚乳酸在溶液中形成大量聚集体,导致聚乳酸分子的吸附行为从扩散控制吸附转变为混合动力学吸附,聚乳酸表现出极高的表面活性。此外,PLW 还具有良好的发泡特性和无刺激性。因此,预计 PLW 将在家用化学品领域得到广泛应用。
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来源期刊
Journal of Surfactants and Detergents
Journal of Surfactants and Detergents 工程技术-工程:化工
CiteScore
3.80
自引率
6.20%
发文量
68
审稿时长
4 months
期刊介绍: Journal of Surfactants and Detergents, a journal of the American Oil Chemists’ Society (AOCS) publishes scientific contributions in the surfactants and detergents area. This includes the basic and applied science of petrochemical and oleochemical surfactants, the development and performance of surfactants in all applications, as well as the development and manufacture of detergent ingredients and their formulation into finished products.
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