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日用化学工业(中英文) ›› 2026, Vol. 56 ›› Issue (8): 1019-1026.doi: 10.3969/j.issn.2097-2806.2026.08.006

• 基础研究 • 上一篇    下一篇

构建pH响应型拟双子表面活性剂:探究提升护发素体系性能的微观机制

王莉娜*(),蔡小雪*(),汤小芹,张国栋,郑春颖   

  1. 上海自然堂集团有限公司上海 200233
  • 收稿日期:2025-10-09 修回日期:2026-08-10 出版日期:2026-08-22 发布日期:2026-09-02

Construction of pH-responsive pseudo-Gemini surfactants: exploring microscopic mechanisms for enhancing hair conditioner performance

Lina Wang*(),Xiaoxue Cai*(),Xiaoqin Tang,Guodong Zhang,Chunying Zheng   

  1. CHANDO GROUP, Shanghai 200233, China
  • Received:2025-10-09 Revised:2026-08-10 Online:2026-08-22 Published:2026-09-02
  • Contact: *E-mail: wanglina3@chandogroup.com (Lina Wang) ; caixiaoxue@chandogroup.com (Xiaoxue Cai).

摘要:

文章系统地探讨了琥珀酸(SA)在护发素体系中的分子设计优势及其pH响应特性,旨在突破传统护发素配方存在的高脂依赖、结构松散等瓶颈问题,提出创新策略。同为双羧酸的戊二酸(GA)体系亦展现出优于单酸体系的结构特性,证实了双羧酸分子设计的普适优势。实验结果表明,琥珀酸凭借其双羧酸基团与硬脂酰胺丙基二甲胺(SPA)相互作用,形成拟双子表面活性剂结构,进而构建出长程有序的致密层状网络。在脂肪醇用量仅为5%的条件下,该体系的静态增稠效率(η0=18 810 mPa·s)相较于乳酸(LA)体系显著提升了4.5倍。同时,琥珀酸的引入还协同增强了护发素的梳理性(湿梳改善率67.51%)、抗静电性(相对静电电压4.23%)和防断发性(梳理5 000次减少断发63%)。进一步研究发现,当体系pH值从4.5升高至6.5时,通过增加电荷中和作用,优化了层状网络的致密性,从而使静态黏度(η0=35 940 mPa·s)与抗静电性能(相对静电电压1.48%)得到显著提升。然而,该体系的剪切稀化斜率保持一致性,确保了动态铺展性不受影响。该研究揭示了护发素体系中“静态致密-动态响应”的平衡机制,并提出了通过分子设计与环境参数调控相结合的方式,实现配方精简与性能优化的双重路径。

关键词: 琥珀酸, 护发素, pH响应性, 拟双子表面活性剂, 流变特性, 抗静电性

Abstract:

This study systematically explores the molecular design advantages of succinic acid (SA) in hair conditioner systems and its pH-responsive characteristics, aiming to overcome the bottlenecks of traditional formulations, such as high lipid dependence and loose structure. Notably, the glutaric acid (GA) system, as another dicarboxylic acid, also demonstrates superior network properties, which collectively confirms the pivotal role of the dicarboxylic acid molecular architecture. Experimental results show that SA, through its dicarboxylic acid groups interacting with stearamidopropyl dimethylamine (SPA), forms a pseudo-Gemini surfactant structure, thereby constructing a long-range ordered dense lamellar network. Under the condition of only 5% fatty alcohol, the static viscosity of this system (η0=18 810 mPa·s) is significantly improved by 4.5 times compared to the lactic acid (LA) system. Additionally, the introduction of SA synergistically improves the wet combability (improvement rate of 67.51%), antistatic properties (relative static voltage of 4.23%), and anti-breakage performance (reducing hair breakage by 63% after 5 000 combing strokes). Further investigation reveals that increasing the system pH from 4.5 to 6.5 promotes charge neutralization, optimizing the compactness of the lamellar network. This leads to a significant increase in zero-shear viscosity (η0=35 940 mPa·s) and superior antistatic performance (relative static voltage of 1.48%). Crucially, the consistent shear-thinning slope across the tested pH range ensures that dynamic spreadability remains uncompromised. This work elucidates a “static compactness-dynamic response” balance mechanism in conditioner systems and proposes a synergistic strategy combining molecular design with environmental parameter control to achieve simultaneous formulation simplification and performance enhancement. These findings provide a solid theoretical foundation and an innovative technical framework for developing high-performance hair conditioner products.

Key words: succinic acid, conditioner, pH-responsive, pseudo-Gemini surfactant, rheological properties, antistatic properties

中图分类号: 

  • TQ423