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单壁碳纳米管 - 溶剂混合物的多组分溶解度参数

Multicomponent solubility parameters for single-walled carbon nanotube-solvent mixtures.

作者信息

Bergin Shane D, Sun Zhenyu, Rickard David, Streich Philip V, Hamilton James P, Coleman Jonathan N

机构信息

School of Physics, Trinity College Dublin, Dublin 2, Ireland.

出版信息

ACS Nano. 2009 Aug 25;3(8):2340-50. doi: 10.1021/nn900493u.

Abstract

We have measured the dispersibility of single-walled carbon nanotubes in a range of solvents, observing values as high as 3.5 mg/mL. By plotting the nanotube dispersibility as a function of the Hansen solubility parameters of the solvents, we have confirmed that successful solvents occupy a well-defined range of Hansen parameter space. The level of dispersibility is more sensitive to the dispersive Hansen parameter than the polar or H-bonding Hansen parameter. We estimate the dispersion, polar, and hydrogen bonding Hansen parameter for the nanotubes to be <delta(D)> = 17.8 MPa(1/2), <delta(P)> = 7.5 MPa(1/2), and <delta(H)> = 7.6 MPa(1/2). We find that the nanotube dispersibility in good solvents decays smoothly with the distance in Hansen space from solvent to nanotube solubility parameters. Finally, we propose that neither Hildebrand nor Hansen solubility parameters are fundamental quantities when it comes to nanotube-solvent interactions. We show that the previously calculated dependence of nanotube Hildebrand parameter on nanotube diameter can be reproduced by deriving a simple expression based on the nanotube surface energy. We show that solubility parameters based on surface energy give equivalent results to Hansen solubility parameters. However, we note that, contrary to solubility theory, a number of nonsolvents for nanotubes have both Hansen and surface energy solubility parameters similar to those calculated for nanotubes. The nature of the distinction between solvents and nonsolvents remains to be fully understood.

摘要

我们测量了单壁碳纳米管在一系列溶剂中的分散性,观察到高达3.5毫克/毫升的值。通过绘制纳米管分散性与溶剂的汉森溶解度参数的函数关系图,我们证实了成功的溶剂占据了汉森参数空间中一个明确的范围。分散性水平对分散性汉森参数比极性或氢键汉森参数更敏感。我们估计纳米管的分散、极性和氢键汉森参数分别为<δ(D)> = 17.8兆帕(1/2),<δ(P)> = 7.5兆帕(1/2),以及<δ(H)> = 7.6兆帕(1/2)。我们发现,在良溶剂中纳米管的分散性随着在汉森空间中从溶剂到纳米管溶解度参数的距离而平滑衰减。最后,我们提出,就纳米管 - 溶剂相互作用而言,希尔德布兰德溶解度参数和汉森溶解度参数都不是基本量。我们表明,基于纳米管表面能推导一个简单表达式可以重现先前计算的纳米管希尔德布兰德参数对纳米管直径的依赖性。我们表明,基于表面能的溶解度参数与汉森溶解度参数给出等效结果。然而,我们注意到,与溶解度理论相反,许多纳米管的非溶剂的汉森溶解度参数和表面能溶解度参数都与为纳米管计算的参数相似。溶剂和非溶剂之间区别的本质仍有待充分理解。

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