Yilmaz Hayriye, Rasulev Bakhtiyor, Leszczynski Jerzy
Department of Biomedical Devices and Technology, Kayseri Vocational School, Erciyes University, Kayseri 38039, Turkey.
Interdisciplinary Center for Nanotoxicity, Department of Chemistry and Biochemistry, Jackson State University, Jackson, MS 39217, USA.
Nanomaterials (Basel). 2015 May 12;5(2):778-791. doi: 10.3390/nano5020778.
The knowledge of physico-chemical properties of carbon nanotubes, including behavior in organic solvents is very important for design, manufacturing and utilizing of their counterparts with improved properties. In the present study a quantitative structure-activity/property relationship (QSAR/QSPR) approach was applied to predict the dispersibility of single walled carbon nanotubes (SWNTs) in various organic solvents. A number of additive descriptors and quantum-chemical descriptors were calculated and utilized to build QSAR models. The best predictability is shown by a 4-variable model. The model showed statistically good results (² = 0.797, ² = 0.665, ² = 0.807), with high internal and external correlation coefficients. Presence of the X0Av descriptor and its negative term suggest that small size solvents have better SWCNTs solubility. Mass weighted descriptor ATS6m also indicates that heavier solvents (and small in size) most probably are better solvents for SWCNTs. The presence of the Dipole descriptor indicates that higher polarizability of the solvent molecule increases the solubility. The developed model and contributed descriptors can help to understand the mechanism of the dispersion process and predictorganic solvents that improve the dispersibility of SWNTs.
了解碳纳米管的物理化学性质,包括其在有机溶剂中的行为,对于设计、制造和利用具有改进性能的碳纳米管对应物非常重要。在本研究中,采用定量构效/构性关系(QSAR/QSPR)方法来预测单壁碳纳米管(SWNTs)在各种有机溶剂中的分散性。计算并利用了许多加和描述符和量子化学描述符来建立QSAR模型。一个四变量模型显示出最佳的预测能力。该模型显示出统计学上的良好结果(² = 0.797,² = 0.665,² = 0.807),具有较高的内部和外部相关系数。X0Av描述符及其负项的存在表明小尺寸溶剂对SWCNTs具有更好的溶解性。质量加权描述符ATS6m也表明较重的溶剂(且尺寸较小)很可能是SWCNTs的更好溶剂。偶极矩描述符的存在表明溶剂分子较高的极化率会增加溶解度。所建立的模型和贡献的描述符有助于理解分散过程的机制,并预测能提高SWNTs分散性的有机溶剂。