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Depletion Effect-mediated Association of Carbon Nanotube-Polymer Composites and Their Application as Inexpensive Electrode Support Materials

机译:耗尽效应介导的碳纳米管 - 聚合物复合材料及其应用作为廉价电极载体材料的应用

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摘要

The association between carbon nanotubes (CNTs) and polymers to afford functional composites has been attributed to enthalpic interactions, neglecting the entropic depletion effect, in which bound solvents are released during the association process. Here, we show that association between multiwalled CNTs and common polymers is governed by the depletion effect, generating a corresponding entropic free energy up to ca. 13 kJ mol(-1) at room temperature, while the enthalpic contribution is insignificant or even negative. Notably, association between the polymers and the CNTs takes place preferentially at the highly stacked CNT junctions, leading to mechanical reinforcement without impacting conductivity. Consequently, high-performance composite membranes were fabricated from inexpensive multiwalled CNTs and polyacrylonitrile (PAN) and were used as electrode supports for platinum (Pt) nanoparticles, affording specific currents 6-7-fold higher than that of Pt foil in the hydrogen evolution reaction and displaying outstanding stability.
机译:碳纳米管(CNT)和聚合物,得到功能复合材料之间的关联已被归因于焓相互作用,而忽略了熵耗尽效应,其中结合的溶剂在关联过程中释放。这里,我们显示多壁CNT和共同聚合物之间的关联由耗尽效应支配,生成对应的熵自由能高达约13千焦耳摩尔(-1)在室温下,而焓贡献是不显着或甚至负的。值得注意的是,聚合物和碳纳米管之间的关联发生优先在高度堆叠CNT结,导致机械增强,而不会影响导电性。因此,高性能复合膜从便宜的多壁CNT和聚丙烯腈(PAN)制成,并用作电极支承为铂(Pt)纳米粒子,得到箔的氢生成反应的特定电流6-7倍比的Pt的更高和显示出色的稳定性。

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