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Contact angle hysteresis of liquid drops as means to measure adhesive energy of zein on solid substrates

机译:液滴的接触角滞后作为测量玉米蛋白在固体基质上的粘合能的手段

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Adhesion of zein to solid substrates has been studied using surface energy profiles as indices and by adhesion mapping using atomic force microscopy (AFM). Different plasticizers like glycerol and sorbitol have been used to form mixed films with zein and properties of these films are studied using surface energy profiles. Comparison of the results from the different mixed samples with those from the pure zein films showed that force mapping could identify areas rich in protein. The adhesion maps produced were deconvoluted from sample topography and contrasted with the data obtained from contact angle measurements. A comparison of the two methods shows that the extent of contact angle hysteresis is indicative of both hydrophobicity of the surface as well as the force of adhesion. Mechanical properties and microstructure of zein films prepared by casting from solutions and using Langmuir-Blodgett film technique have been investigated. Pure zein seemed brittle and exhibited an essentially linear relationship between stress and strain. Films with plasticizer were tougher than these films. In general, mixed films showed better mechanical properties than pure films and had higher ultimate tensile strength and increased per cent elongation. Further, the mixed films of zein showed a higher force of adhesion compared to the pure films.
机译:玉米醇溶蛋白对固体基质的粘附性已经使用表面能谱作为指标进行了研究,并通过使用原子力显微镜(AFM)的粘附作图进行了研究。不同的增塑剂(如甘油和山梨糖醇)已被用于形成玉米蛋白的混合膜,并使用表面能曲线研究了这些膜的性能。将不同混合样品的结果与纯玉米醇溶蛋白膜的结果进行比较,结果表明,力图可以识别富含蛋白质的区域。从样品形貌上反卷积产生的附着力图,并与从接触角测量获得的数据进行对比。两种方法的比较表明,接触角滞后的程度既指示了表面的疏水性,又指示了粘附力。研究了通过溶液浇铸并使用Langmuir-Blodgett膜技术制备的玉米醇溶蛋白膜的力学性能和微观结构。纯玉米醇溶蛋白看起来很脆,并且在应力和应变之间表现出基本上线性的关系。含增塑剂的薄膜比这些薄膜坚韧。通常,混合膜显示出比纯膜更好的机械性能,并且具有更高的极限拉伸强度和增加的伸长率。此外,玉米醇溶蛋白的混合膜与纯膜相比显示出更高的粘附力。

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