Zapolski Remigiusz, Musiał Witold
Department of Physical Chemistry and Biophysics, Wroclaw Medical University, Borowska 211A, 50-556 Wrocław, Poland.
Molecules. 2024 May 16;29(10):2351. doi: 10.3390/molecules29102351.
The aim of the work was to determine important parameters of the course of π-A isotherms, which can determine the HLB (hydrophilic-lipophilic balance) value of surfactant mixtures with selected structural features, such as a straight or branched hydrocarbon chain and a double bond, using RSM (response surface methodology) computational methods. Mixtures of surfactants derived from fatty acids and sorbitan with specific HLB values were evaluated by Langmuir trough. The resulting elasticity modules (ELM) and molecules surfaces (SAM) were evaluated via response surface methodology and respective equations were calculated. The π-A isotherm determined in a Langmuir trough and the ELM and SAM parameters determined on the basis of this isotherm may be useful for determining the HLB of a fixed surfactant mixture. The RSM method used, in which ELM and SAM were assumed as two independent variables, can be a useful technique for tracking the influence of individual molecular characteristics on the hydrophilic-lipophilic properties of mixtures of surfactant compounds. Changes in HLB as a dependent variable can be described as a function of ELM and SAM.
这项工作的目的是使用响应面法(RSM)计算方法确定π-A等温线过程的重要参数,这些参数可以确定具有选定结构特征(如直链或支链烃链以及双键)的表面活性剂混合物的亲水亲油平衡(HLB)值。通过Langmuir槽评估了具有特定HLB值的脂肪酸山梨糖醇酯表面活性剂混合物。通过响应面法评估所得的弹性模量(ELM)和分子表面积(SAM),并计算相应的方程。在Langmuir槽中测定的π-A等温线以及基于该等温线确定的ELM和SAM参数可能有助于确定固定表面活性剂混合物的HLB。所使用的RSM方法将ELM和SAM视为两个独立变量,对于追踪单个分子特征对表面活性剂化合物混合物亲水亲油性质的影响可能是一种有用的技术。作为因变量的HLB变化可以描述为ELM和SAM的函数。