Zhu Jianzhuo, Ou Xinwen, Su Jiguo, Li Jingyuan
College of Science, Yanshan University, Qinhuangdao 066004, China.
CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, Institute of High Energy Physics, Chinese Academy of Sciences, Yuquan Road 19B, Beijing 100049, China.
J Chem Phys. 2016 Jul 28;145(4):044504. doi: 10.1063/1.4959805.
In order to study the dependence of water solubility and hydration behavior of nanoparticles on their surface polarity, we designed polar nanoparticles with varying surface polarity by assigning atomic partial charge to the surface of C60. The water solubility of the nanoparticle is enhanced by several orders of magnitude after the introduction of surface polarity. Nevertheless, when the atomic partial charge grows beyond a certain value (qM), the solubility continuously decreases to the level of nonpolar nanoparticle. It should be noted that such qM is comparable with atomic partial charge of a variety of functional groups. The hydration behaviors of nanoparticles were then studied to investigate the non-monotonic dependence of solubility on the surface polarity. The interaction between the polar nanoparticle and the hydration water is stronger than the nonpolar counterpart, which should facilitate the dissolution of the nanoparticles. On the other hand, the surface polarity also reduces the interaction of hydration water with the other water molecules and enhances the interaction between the nanoparticles which may hinder their dispersion. Besides, the introduction of surface polarity disturbs and even rearranges the hydration structure of nonpolar nanoparticle. Interestingly, the polar nanoparticle with less ordered hydration structure tends to have higher water solubility.
为了研究纳米颗粒的水溶性和水合行为对其表面极性的依赖性,我们通过给C60表面赋予原子部分电荷,设计了具有不同表面极性的极性纳米颗粒。引入表面极性后,纳米颗粒的水溶性提高了几个数量级。然而,当原子部分电荷超过某一值(qM)时,溶解度持续下降至非极性纳米颗粒的水平。应当指出,这样的qM与多种官能团的原子部分电荷相当。随后研究了纳米颗粒的水合行为,以探究溶解度对表面极性的非单调依赖性。极性纳米颗粒与水合水之间的相互作用强于非极性纳米颗粒,这应有助于纳米颗粒的溶解。另一方面,表面极性也降低了水合水与其他水分子之间的相互作用,并增强了纳米颗粒之间的相互作用,这可能会阻碍它们的分散。此外,表面极性的引入会干扰甚至重新排列非极性纳米颗粒的水合结构。有趣的是,水合结构无序程度较低的极性纳米颗粒往往具有较高的水溶性。