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首页> 外文期刊>Journal of Materials Science >Branched versus linear perfluorocarbon chains in the formation of superhydrophobic electrodeposited films with low bioaccumulative potential
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Branched versus linear perfluorocarbon chains in the formation of superhydrophobic electrodeposited films with low bioaccumulative potential

机译:具有低生物蓄积潜力的超疏水电沉积膜形成中的支链与线性全氟化碳链

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摘要

This work concerns the replacing of long and linear perfluorocarbon chains by branched ones to reduce the bioaccumulative potentials of fluorinated materials. Here, novel 3,4-propylenedioxythiophene monomers containing a branched perfluorocarbon chain or a linear perfluorocarbon chain with the same number of C-F bonds are synthesized and used to produce superhydrophobic films by electropolymerization. The branching induces higher steric hindrance during electropolymerization, which reduces the mean polymer backbone length, decreases the polymer electrical conductivity, and changes the surface morphology. Here, we show that these changes can be beneficial in the case of super liquid-repellent properties. Indeed, superhydrophobic properties are obtained with linear and branched perfluorocarbon chains. However, while superoleophilic properties are obtained with both linear perfluorocarbon chains, much higher oleophobic properties are obtained with branched perfluorocarbon chains. Here, the differences are due to changes in the surface morphology and roughness. This work opens new strategies to obtain surfaces with high hydrophobicity and oleophobicity.
机译:这项工作涉及用支链取代长而直的全氟化碳链,以减少氟化物的生物蓄积潜力。在此,合成了含有具有相同数目的C-F键的支链全氟化碳链或线性全氟化碳链的新型3,4-丙烯二氧基噻吩单体,并用于通过电聚合制备超疏水性膜。该支化在电聚合过程中引起较高的空间位阻,这减少了平均聚合物主链的长度,降低了聚合物的电导率,并改变了表面形态。在这里,我们证明了这些改变在超疏液性的情况下可能是有益的。实际上,利用直链和支链的全氟化碳链可获得超疏水性能。然而,虽然在两个线性全氟化碳链上都获得了超亲油性,但在支化的全氟化碳链上却获得了更高的疏油性。在此,差异是由于表面形态和粗糙度的变化引起的。这项工作开启了获得具有高疏水性和疏油性的表面的新策略。

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