Department of Chemical and Biomedical Engineering, Washkewicz College of Engineering, Cleveland State University, 2121 Euclid Avenue, Cleveland, Ohio 44115, United States.
Department of Chemistry, Center for Gene Regulation in Health and Disease (GRHD), Cleveland State University, 2121 Euclid Avenue, Cleveland, Ohio 44115, United States.
Langmuir. 2020 Aug 25;36(33):9878-9885. doi: 10.1021/acs.langmuir.0c01498. Epub 2020 Aug 14.
Stable dispersions of single-wall carbon nanotubes (SWCNTs) by biopolymers in an aqueous environment facilitate their potential biological and biomedical applications. In this report, we investigated a small library of precision synthesized glycopolymers with monosaccharide and disaccharide groups for stabilizing SWCNTs noncovalent complexation in aqueous conditions. Among the glycopolymers tested, disaccharide lactose-containing glycopolymers demonstrate effective stabilization of SWCNTs in water, which strongly depends on carbohydrate density and polymer chain length as well. The introduction of disaccharide lactose potentially makes glycopolymers less flexible as compared to those containing monosaccharide and facilitates the wrapping conformation of polymers on the surface of SWCNTs while preserving intrinsic photoluminescence of nanotubes in the near-infrared region. This work demonstrates the synergistic effects of the identity of carbohydrate pendant groups and polymer chain length of glycopolymers on stabilizing SWCNTs in water, which has not been achieved previously.
在水相环境中,通过生物聚合物稳定单壁碳纳米管(SWCNT)的分散体,有利于其在潜在的生物和生物医学应用中发挥作用。在本报告中,我们研究了一小部分经过精确合成的具有单糖和二糖基团的糖聚合物,以用于在水相条件下通过非共价络合稳定 SWCNT。在所测试的糖聚合物中,含有二糖乳糖的糖聚合物在水中对 SWCNT 具有有效的稳定作用,这强烈依赖于糖密度和聚合物链长。与含有单糖的糖聚合物相比,二糖乳糖的引入可能会使糖聚合物的柔韧性降低,并有利于聚合物在 SWCNT 表面上的包裹构象,同时保持近红外区域中纳米管的固有光致发光。这项工作证明了糖聚合物上糖基侧基的性质和聚合物链长对稳定水中 SWCNT 的协同作用,这是以前未曾实现的。