Department of Chemistry, East Tehran Branch, Ghiamdasht, Islamic Azad University, Tehran, Iran.
J Mol Model. 2012 Jul;18(7):3379-88. doi: 10.1007/s00894-011-1339-2. Epub 2012 Jan 21.
Nanotubes are believed to open the road toward different modern fields, either technological or biological. However, the applications of nanotubes have been badly impeded for the poor solubility in water which is especially essential for studies in the presence of living cells. Therefore, water soluble samples are in demand. Herein, the outcomes of Monte Carlo simulations of different sets of multiwall nanotubes immersed in water are reported. A number of multi wall nanotube samples, comprised of pure carbon, pure silicon and several mixtures of carbon and silicon are the subjects of study. The simulations are carried out in an (N,V,T) ensemble. The purpose of this report is to look at the effects of nanotube size (diameter) and nanotube type (pure carbon, pure silicon or a mixture of carbon and silicon) variation on solubility of multiwall nanotubes in terms of number of water molecules in shell volume. It is found that the solubility of the multi wall carbon nanotube samples is size independent, whereas multi wall silicon nanotube samples solubility varies with diameter of the inner tube. The higher solubility of samples containing silicon can be attributed to the larger atomic size of silicon atom which provides more direct contact with the water molecules. The other affecting factor is the bigger inter space (the space between inner and outer tube) in the case of silicon samples. Carbon type multi wall nanotubes appeared as better candidates for transporting water molecules through a multi wall nanotube structure, while in the case of water adsorption problems it is better to use multi wall silicon nanotubes or a mixture of multi wall carbon/ silicon nanotubes.
纳米管被认为为不同的现代领域开辟了道路,无论是技术领域还是生物领域。然而,由于其在水中的溶解度较差,纳米管的应用受到了严重阻碍,而水的溶解度对于在活细胞存在的情况下的研究尤为重要。因此,需要水溶性样品。本文报告了不同多壁纳米管在水中的蒙特卡罗模拟的结果。研究了由纯碳、纯硅和碳硅混合物组成的多种多壁纳米管样品。模拟是在(N,V,T)系综中进行的。本报告的目的是研究纳米管尺寸(直径)和纳米管类型(纯碳、纯硅或碳硅混合物)变化对多壁纳米管在壳体积内水分子数量方面的溶解度的影响。结果表明,多壁碳纳米管样品的溶解度与尺寸无关,而多壁硅纳米管样品的溶解度随内管直径而变化。含硅样品的溶解度较高可归因于硅原子的原子尺寸较大,从而与水分子有更多的直接接触。另一个影响因素是硅样品的间隔空间(内管和外管之间的空间)较大。碳型多壁纳米管似乎是通过多壁纳米管结构输送水分子的更好候选者,而在水吸附问题方面,最好使用多壁硅纳米管或多壁碳/硅纳米管混合物。