Han Youngkyu, Ahn Suk-Kyun, Zhang Zhe, Smith Gregory S, Do Changwoo
Biology and Soft Matter Division, Neutron Science Directorate, Oak Ridge National Laboratory.
Center for Nanophase Materials Sciences, Oak Ridge National Laboratory; Department of Polymer Science and Engineering, Pusan National University.
J Vis Exp. 2016 Jun 1(112):53969. doi: 10.3791/53969.
We demonstrate a protocol for single-walled carbon nanotube functionalization using thermo-sensitive PEO-PPO-PEO triblock copolymers in an aqueous solution. In a carbon nanotube/PEO105-PPO70-PEO105 (poloxamer 407) aqueous solution, the amphiphilic poloxamer 407 adsorbs onto the carbon nanotube surfaces and self-assembles into continuous layers, driven by intermolecular interactions between constituent molecules. The addition of 5-methylsalicylic acid changes the self-assembled structure from spherical-micellar to a cylindrical morphology. The fabricated poloxamer 407/carbon nanotube hybrid particles exhibit thermo-responsive structural features so that the density and thickness of poloxamer 407 layers are also reversibly controllable by varying temperature. The detailed structural properties of the poloxamer 407/carbon nanotube particles in suspension can be characterized by small-angle neutron scattering experiments and model fit analyses. The distinct curve shapes of the scattering intensities depending on temperature control or addition of aromatic additives are well described by a modified core-shell cylinder model consisting of a carbon nanotube core cylinder, a hydrophobic shell, and a hydrated polymer layer. This method can provide a simple but efficient way for the fabrication and in-situ characterization of carbon nanotube-based nano particles with a structure-tunable encapsulation.
我们展示了一种在水溶液中使用热敏性聚环氧乙烷-聚环氧丙烷-聚环氧乙烷三嵌段共聚物对单壁碳纳米管进行功能化的方案。在碳纳米管/聚环氧乙烷105-聚环氧丙烷70-聚环氧乙烷105(泊洛沙姆407)水溶液中,两亲性泊洛沙姆407吸附在碳纳米管表面,并在组成分子间的分子相互作用驱动下自组装成连续层。加入5-甲基水杨酸会使自组装结构从球形胶束转变为圆柱形形态。制备的泊洛沙姆407/碳纳米管杂化颗粒具有热响应结构特征,因此泊洛沙姆407层的密度和厚度也可通过改变温度进行可逆控制。悬浮液中泊洛沙姆407/碳纳米管颗粒的详细结构特性可通过小角中子散射实验和模型拟合分析来表征。通过由碳纳米管核心圆柱体、疏水壳层和水合聚合物层组成的改进核壳圆柱体模型,可以很好地描述取决于温度控制或芳香族添加剂添加情况的散射强度的不同曲线形状。该方法可为制备具有结构可调封装的碳纳米管基纳米颗粒及其原位表征提供一种简单而有效的途径。