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Diameter-selective non-covalent functionalization of carbon nanotubes with porphyrin monomers

机译:Diameter-selective非共价功能化碳纳米管与卟啉单体

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We report on the spontaneous non-covalent functionalization of carbon nanotubes with hydrophobic porphyrin molecules in micellar aqueous solution. By monitoring the species concentrations with optical spectroscopies, we can follow the kinetics of the reaction and study its thermodynamical equilibrium as a function of the reagent concentrations. We show that the reaction is well accounted for by a cooperative Hill equation, reaching a molecular coverage close to a compact monolayer for a porphyrin concentration larger than a diameter-specific threshold concentration. The equilibrium constant is measured for 16 nanotube chiral species. The Gibbs energy of the reaction (of the order of -40 kJ mol(-1)) and its evolution with the nanotube diameter is consistent with theoretical calculations of the binding energy. This thermodynamical study shows a strong preferential binding of TPP molecules to larger diameter nanotubes. This original curvature selectivity can be used to induce diameter selective species enrichment.
机译:我们自发的共价报告功能化的碳纳米管疏水性卟啉分子胶束水溶液。浓度与光学光谱,我们可以按照反应的动力学和学习吗其热力学平衡的函数试剂的浓度。反应是由一个合作希尔方程,达到分子覆盖接近一个紧凑的单层卟啉浓度大于diameter-specific阈值浓度。测量了16纳米管手性物种。吉布斯能量的反应(-40年的订单kJ摩尔(1))与纳米管及其演化直径与理论是一致的结合能的计算。热力学研究表明强有力的优惠绑定的TPP分子更大的直径纳米管。可用于诱导直径选择物种浓缩。

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