Wang Yang, Vasileva Dzhuliya, Zustiak Silviya P, Kuljanishvili Irma
Department of Physics, Saint Louis University, 3511 Laclede Ave., St. Louis, Missouri 63103.
Department of Biomedical Engineering, Saint Louis University, 3507 Lindell Blvd., St. Louis, Missouri 63103.
Biointerphases. 2017 Mar 24;12(1):011004. doi: 10.1116/1.4978922.
Dispersion of high quality carbon nanotubes (CNTs) in aqueous solutions is of central importance for their potential biological and biomedical applications. Although it is now possible to obtain highly dispersed CNT solutions by means of surfactant assisted processing, organic functionalization, and mechanical mixing, a concern remains about preservation of CNTs' quality during these dispersion procedures. In this report, the authors demonstrate that by employing Raman spectroscopy, one can study changes in CNTs' quality post-dispersion. Specifically, the authors focused on mechanical mixing via sonication and quantitatively determined the effects of various parameters such as surfactants, CNTs' geometry, sonication time, and sonication method on CNTs' quality post-sonication. While not addressed here, our method could be extended to monitor CNTs' quality as a function of other parameters that could potentially compromise their quality, such as chemical functionalization or doping.
高质量碳纳米管(CNT)在水溶液中的分散对于其潜在的生物和生物医学应用至关重要。尽管现在可以通过表面活性剂辅助处理、有机功能化和机械混合来获得高度分散的CNT溶液,但在这些分散过程中,CNT质量的保存仍然是一个问题。在本报告中,作者证明通过使用拉曼光谱,可以研究分散后CNT质量的变化。具体而言,作者专注于通过超声处理进行机械混合,并定量确定了各种参数(如表面活性剂、CNT的几何形状、超声处理时间和超声处理方法)对超声处理后CNT质量的影响。虽然这里没有涉及,但我们的方法可以扩展到监测CNT质量随其他可能损害其质量的参数(如化学功能化或掺杂)的变化。