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An investigation on the surface properties of lyocell-based carbon fiber with inverse gas chromatography

机译:反相气相色谱法研究莱赛尔基碳纤维的表面性能

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The surface thermodynamic properties of two types of cellulose-based carbon fibers (LYCF and RCF from lyocell and rayon precursors, respectively) were studied by inverse gas chromatography (IGC). It was found the molar free energy of adsorption (Delta G(m)(ads)) of n-alkane probe molecules on the LYCF surface is higher than that of RCF at different temperatures. The interaction of probes on the surfaces of LYCF and RCF becomes stronger with the increasing in the chain length of the n-alkane probes. Simultaneously, the ln K-s is linear to 1/T, where K-s and T are the constant of Henry's law and temperature, respectively. Similar results were obtained by using Dorris-Gray method (area per methylene unit) and measured probe areas. The results indicate that LYCF and RCF are different in the surface morphology and physical chemistry properties, which suggests that LYCF is a more promising cellulose-based carbon fiber material.
机译:通过逆气相色谱法(IGC)研究了两种类型的纤维素基碳纤维(分别来自lyocell和rayon前体的LYCF和RCF)的表面热力学性质。发现在不同温度下,LYCF表面的正构烷烃探针分子的吸附摩尔自由能(Delta G(m)(ads))高于RCF。随着正构烷烃探针链长的增加,探针在LYCF和RCF表面的相互作用变得更强。同时,ln K-s与1 / T成线性关系,其中K-s和T分别是亨利定律和温度的常数。使用Dorris-Gray方法(每亚甲基单位面积)和测得的探针面积获得了相似的结果。结果表明,LYCF和RCF的表面形态和物理化学性质不同,这表明LYCF是一种更有前景的纤维素基碳纤维材料。

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