首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >CONTACT ANGLE MEASUREMENTS AND CONTACT ANGLE INTERPRETATION .1. CONTACT ANGLE MEASUREMENTS BY AXISYMMETRIC DROP SHAPE ANALYSIS AND A GONIOMETER SESSILE DROP TECHNIQUE
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CONTACT ANGLE MEASUREMENTS AND CONTACT ANGLE INTERPRETATION .1. CONTACT ANGLE MEASUREMENTS BY AXISYMMETRIC DROP SHAPE ANALYSIS AND A GONIOMETER SESSILE DROP TECHNIQUE

机译:接触角测量和接触角解释.1。轴对称滴形状分析和测角仪无滴技术的接触角测量

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Low-rate dynamic contact angles and static advancing contact angles of 13 liquids were measured, respectively, by axisymmetric drop shape analysis (ADSA) and a conventional goniometer technique, on two copolymers, poly(propene-alt-N-(n-propyl)maleimide) and poly(propene-alt-N-(n-hexyl)maleimide); both have polar groups. In the case of the former technique for measuring contact angles (at very low velocity of the three-phase contact line), very complex contact angle responses were observed for some solid-liquid systems. In a specific case, slip and stick contact angle behavior occurs where the contact angle increases steadily by as much as 35 degrees at constant three-phase contact radius and subsequently decreases sharply due to a sudden jump in the three-phase contact line. Thus, circumspection is necessary in the decision whether or not the experimental contact angles can be used to interpret surface energetics in conjunction with Young's equation and whether the solid-liquid systems violate the basic assumptions made in all surface energetics approaches. It was shown that if one omits the inconclusive contact angle measurements, the values of gamma(lv) cos theta change smoothly with gamma(lv) for these copolymers in a pattern already well-known for nonpolar surfaces. Goniometer and ADSA contact angle measurements were shown to be essentially identical for solid-liquid systems which have constant contact angles. In the specific case of the slip/stick mechanism using a goniometer for the contact angle measurements, the observed static advancing angle corresponds to the maximum angle of the entire slip/stick behavior, as registered by the automated axisymmetric drop shape analysis. Thus, conventional goniometer measurements may produce a mixture of meaningful and meaningless contact angles, with no criteria to distinguish between the two. [References: 28]
机译:通过轴对称液滴形状分析(ADSA)和常规测角计技术,分别对两种共聚物(聚丙烯-丙氨酸-N-(正丙基))测量了13种液体的低速动态接触角和静态前进接触角。马来酰亚胺)和聚(丙烯-alt-N-(正己基)马来酰亚胺);两者都有极性基团。在前一种测量接触角的技术(在三相接触线的速度非常低的情况下)的情况下,对于某些固液系统,观察到非常复杂的接触角响应。在特定情况下,会发生滑动和粘着接触角行为,其中在恒定的三相接触半径处,接触角稳定增加多达35度,然后由于三相接触线的突然跳动而急剧减小。因此,在决定是否可以将实验接触角与杨氏方程式结合使用来解释表面能学以及固液系统是否违反所有表面能学方法中的基本假设时,必须谨慎行事。结果表明,如果忽略了不确定的接触角测量,则这些共聚物的γ(lv)cos theta值随γ(lv)的变化会以非极性表面众所周知的方式平稳变化。对于具有恒定接触角的固液系统,测角仪和ADSA接触角的测量结果基本相同。在使用测角计进行接触角测量的打滑/粘着机构的特定情况下,观察到的静态前进角对应于整个打滑/粘着行为的最大角度,如通过自动轴对称液滴形状分析所记录的。因此,常规的测角仪测量可能会产生有意义和无意义的接触角的混合,而没有判别两者之间的标准。 [参考:28]

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