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Nanometer Smooth, Macroscopic Spherical Cellulose Probes for Contact Adhesion Measurements

机译:纳米光滑,宏观球形纤维素探针,用于接触粘附力测量

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Cellulose spheres were prepared by dissolving cellulose fibers and subsequently solidifying the solution in a nonsolvent. Three different solution concentrations were tested and several nonsolvents were evaluated for their effect on the formation of spheres. Conditions were highlighted to create cellulose spheres with a diameter of similar to 1 mm and a root-mean-square surface roughness of similar to 1 nm. These solid spheres were shown to be easily chemically modified without changing the mechanical properties significantly. Contact adhesion measurements were then implemented with these spheres against a poly(dimethylsiloxane) (PDMS) elastomer in order to quantify the adhesion. Using Johnson-Kendall-Roberts (JKR) theory, we quantified the adhesion for unmodified cellulose and hydrophobic cellulose spheres. We highlight the ability of these spheres to report more accurate adhesion information, compared to spin-coated thin films. The application of these new cellulose probes also opens up new possibilities for direct, accurate measurement of adhesion between cellulose and other materials instead of using uncertain surface energy determinations to calculate the theoretical work of adhesion between cellulose and different solid materials.
机译:通过溶解纤维素纤维,然后在非溶剂中固化溶液来制备纤维素球。测试了三种不同的溶液浓度,并评估了几种非溶剂对球体形成的影响。强调条件以产生直径约1mm且均方根表面粗糙度约1nm的纤维素球。这些固体球体显示出易于化学改性,而没有显着改变机械性能。然后使用这些球对聚二甲基硅氧烷(PDMS)弹性体进行接触粘附力测量,以量化粘附力。使用约翰逊·肯德尔·罗伯茨(Johnson-Kendall-Roberts)理论(JKR),我们对未改性纤维素球和疏水性纤维素球的附着力进行了定量。与旋涂薄膜相比,我们强调了这些球体报告更准确的粘合信息的能力。这些新型纤维素探针的应用也为直接,准确地测量纤维素与其他材料之间的粘附力开辟了新的可能性,而不是使用不确定的表面能测定来计算纤维素与不同固体材料之间粘附力的理论功。

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