STRUCTURAL MODEL OF EFFICIENCY OF COVALENT FUNCTIONALIZATION OF CARBON NANOTUBES

G. Kozlov, I. Dolbin
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引用次数: 2

Abstract

Functionalization of carbon nanotubes (covalent and noncovalent ones) is effective and often applied method of enhancement of their interaction with polymer matrix of nanocomposites. In present work the treatment is proposed, for the first time allowing quantitative estimation of efficiency (quality) of this nanofiller functionalization. For this purpose proposed earlier generalized model was used, taking into consideration characteristics of matrix polymer and nanofiller and also type of the last. Application of the indicated model allows to obtain quantitative characteristic of functionalization efficiency and also elucidation of interconnection of the indicated efficiency with structure of carbon nanotubes in polymer matrix of nanocomposite, namely, with radius of their annular structures. It has been found that the same method of functionalization from the chemical point of view can be changed its efficiency in 20 times that is dependent upon structure (radius) of annular formations of carbon nanotubes. Their specific surface is the more precise characteristic of these formations. This surface serves as indicator of intensity of contact of polymer matrix and surface of nanotubes, which in the end forms mechanical and other properties of the considered nanocomposites. The equation has been obtained, showing the dependence of functionalization efficiency on two parameters: effective specific surface and content of carbon nanotubes. The sharp discrete reduction of functionalization occurs at reaching of percolation threshold of nanofiller. This means that functionalization of local structures of carbon nanotubes is more effective than functionalization of uninterrupted structures of this nanofiller. The most important mechanical property of polymer nanocomposites, namely, the reinforcement degree, is defined unequivocally by efficiency of functionalization. This approach allows making structural prediction of mechanical properties of nanocomposites polymer/carbon nanotube depending of efficiency of nanofiller functionalization.
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碳纳米管共价功能化效率的结构模型
碳纳米管(共价和非共价碳纳米管)的功能化是增强其与聚合物基体相互作用的有效方法。在目前的工作中,提出了处理方法,首次允许定量估计这种纳米填料功能化的效率(质量)。为此,采用了先前提出的广义模型,考虑了基体聚合物和纳米填充剂的特性以及纳米填充剂的类型。应用指示模型可以获得功能化效率的定量特征,并阐明指示效率与纳米复合材料聚合物基体中碳纳米管的结构,即其环形结构半径之间的相互关系。从化学角度来看,同样的功能化方法的效率可以改变20倍,这取决于碳纳米管环状结构的结构(半径)。它们的特定表面是这些地层更精确的特征。该表面作为聚合物基体与纳米管表面接触强度的指示器,最终形成所考虑的纳米复合材料的力学和其他性能。得到了功能化效率与有效比表面积和碳纳米管含量的关系方程。在达到纳米填料的渗透阈值时,功能化发生急剧的离散性降低。这意味着碳纳米管局部结构的功能化比这种纳米填料的不间断结构的功能化更有效。聚合物纳米复合材料最重要的力学性能,即增强度,是由功能化效率明确定义的。这种方法可以根据纳米填料的功能化效率对聚合物/碳纳米管纳米复合材料的力学性能进行结构预测。
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