Superhydrophilic surfaces from short and medium chain solvo-surfactants

R. Valentin, Z. Mouloungui
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引用次数: 4

Abstract

Pure monoglycerides (GM-Cs) and glycerol carbonate esters (GCE-Cs) are two families of oleochemical molecules composed of a polar part, glycerol for GM-Cs, glycerol carbonate for GCE-Cs, and a fatty acid lipophilic part.From a chemical point of view, GM-Cs include two free oxygen atoms in the hydroxyl functions and one ester function between the fatty acid and the glycerol parts. GCE-Cs contain two blocked oxygen atoms in the cyclic carbonate backbone and three esters functions: two endocyclic in the five-membered cyclic carbonate function, one exocyclic between the fatty acid and glycerol carbonate parts. At the physico-chemical level, GMCs and GCE-Cs are multifunctional molecules with amphiphilic structures: a common hydrophobic chain to the both families and a polar head, glycerol for GMs and glycerol carbonate for GCE-Cs. Physicochemical properties depend on chain lengths, odd or even carbon numbers on the chain, and glyceryl or cyclocarbonic polar heads.The solvo-surfactant character of GM-Cs and overall GCE-Cs were discussed through the measurements of critical micellar concentration (CMC) or critical aggregation concentration (CAC). These surface active glycerol esters/glycerol carbonate esters were classified following their hydrophilic/hydrophobic character correlated to their chain length (LogPoctanol/water = f(atom carbon number)). Differential scanning calorimetry and optical polarized light microscopy allow us to highlight the selfassembling properties of the glycerol carbonate esters alone and in presence of water. We studied by thermal analysis the polymorphic behaviour of GCE-Cs, and the correlation between their melting points versus the chain lengths.Coupling the self-aggregation and crystallization properties, superhydrophilic surfaces were obtained by formulating GM-Cs and GCE-Cs. An efficient durable water-repellent coating of various metallic and polymeric surfaces was allowed. Such surfaces coated by self-assembled fatty acid esters in a stable coagel state present a novel solution for the water-repellent coating of surfaces.
短链和中链溶剂表面活性剂的超亲水性表面
纯单甘油酯(GM-Cs)和碳酸甘油酯(GCE-Cs)是两个油脂化学分子家族,由极性部分、甘油(GM-Cs)、碳酸甘油(GCE-Cs)和脂肪酸亲脂部分组成。从化学角度来看,GM-Cs在脂肪酸和甘油部分之间的羟基官能团和酯官能团中包含两个自由氧原子。GCE-Cs在碳酸环主链中含有两个氧原子阻塞,并含有三个酯功能:五元碳酸环功能中的两个内环,脂肪酸和碳酸甘油部分之间的一个外环。在物理化学水平上,gmc和GCE-Cs是具有两亲性结构的多功能分子:两个家族都有一个共同的疏水链和一个极性头,GMs为甘油,GCE-Cs为碳酸甘油。物理化学性质取决于链的长度,链上的奇数或偶数碳数,以及甘油或环碳的极性头。通过临界胶束浓度(CMC)和临界聚集浓度(CAC)的测定,讨论了GCE-Cs和整体GCE-Cs的溶剂表面活性剂性质。这些表面活性甘油酯/碳酸甘油酯根据其链长(LogPoctanol/water = f(原子碳序数))的亲疏水性进行分类。差示扫描量热法和光学偏振光显微镜使我们能够突出碳酸甘油酯单独和存在水时的自组装特性。我们通过热分析研究了GCE-Cs的多晶行为,以及它们的熔点与链长之间的关系。通过配制GM-Cs和GCE-Cs获得了超亲水性表面。允许各种金属和聚合物表面的高效耐用的防水涂层。这种由自组装脂肪酸酯以稳定的凝固状态涂覆的表面为表面的防水涂层提供了一种新的解决方案。
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