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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Interactions between gemini surfactants and polymers: Thermodynamic studies
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Interactions between gemini surfactants and polymers: Thermodynamic studies

机译:双子表面活性剂与聚合物之间的相互作用:热力学研究

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Aqueous mixtures containing a homopolymer, poly(vinylpyrrolidone) (PVP), or a hydrophobically modified graft copolymer, HM-pullulan, (PULAU(9), where 9 stands for the nominal substitution degree), and different Gemini surfactants have been investigated at 25.0 degrees C. A wide variety of experimental conditions were addressed by changing the amount of polymer and of surfactant. The Gemini surfactants were synthesized, purified, and characterized by routine methods. They differ from each other in polar head groups (two sulfonate-, two quaternary ammonium-, or two arginine-based groups), in alkyl chain length (11 or 12 carbon atoms), and in the distance between the polar head groups. The spacers consist of 2, 3, and 6 methylene units or 3 oxyethylene units. Surface activity and solution calorimetry measurements yield some physicochemical features inherent to micelle formation and polymer-surfactant interactions. The data are supported by ionic conductivity, detecting the critical thresholds and quantifying the modifications in binding associated with critical association (CAC) and micelle formation (CMC*). The Gibbs energy of transfer from the micelles to a polymer-binding site, Delta G(trans), was evaluated from the CAC/CMC* ratios versus the amount of added polymer. A similar procedure determined the enthalpy of transfer, Delta H-trans. Delta G(trans) decreases with added polymer, whereas Delta H-trans becomes more negative on increasing the amount of polymer in the medium. According to the selected data presented here, cationic Geminis do not interact with PVP, while significant interactions have been observed in other surfactants. In mixtures with PULAU(9), the interaction is significant for all Geminis. This effect is due to interactions between the surfactants and the hydrophobic alkyl groups on the main polymer chain. The pendent groups facing away from the polysaccharide chain act as binding sites for aggregates onto such polymers.
机译:在25.0时已研究了含有均聚物,聚乙烯吡咯烷酮(PVP)或疏水改性接枝共聚物HM-pullulan(PULAU(9),其中9代表标称取代度)和不同Gemini表面活性剂的水性混合物通过改变聚合物和表面活性剂的量解决了各种各样的实验条件。通过常规方法合成,纯化和表征Gemini表面活性剂。它们在极性头基(两个磺酸盐基,两个季铵基或两个精氨酸基),烷基链长(11个或12个碳原子)以及极性头基之间的距离方面彼此不同。间隔基由2、3和6个亚甲基单元或3个氧化乙烯单元组成。表面活性和溶液量热法测量产生了胶束形成和聚合物-表面活性剂相互作用固有的一些物理化学特征。离子电导率可检测数据,检测临界阈值并量化与临界缔合(CAC)和胶束形成(CMC *)相关的结合修饰。从胶束到聚合物结合位点的转移的吉布斯能量,即ΔG(反式),是根据CAC / CMC *比对添加的聚合物的量来评估的。相似的过程确定了转移焓ΔH-trans。 Delta G(trans)随添加的聚合物而降低,而Delta H-trans随着介质中聚合物数量的增加而变得更负。根据此处显示的选定数据,阳离子双子座不会与PVP相互作用,而在其他表面活性剂中已观察到显着的相互作用。在与PULAU(9)的混合物中,相互作用对所有双子座都很重要。该作用是由于表面活性剂和主聚合物链上的疏水性烷基之间的相互作用。背离多糖链的侧基充当聚集体在此类聚合物上的结合位点。

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