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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Why is the electroanalytical performance of carbon paste electrodes involving an ionic liquid binder higher than paraffinic binders? A simulation investigation
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Why is the electroanalytical performance of carbon paste electrodes involving an ionic liquid binder higher than paraffinic binders? A simulation investigation

机译:为什么包含离子液体粘合剂的碳糊电极的电分析性能要比石蜡粘合剂高?模拟调查

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Recently, carbon paste electrodes (CPE) fabricated using an ionic liquid (IL) binder have shown enhanced electroanalytical performance over conventional paraffinic binders. Molecular dynamics (MD) simulations of graphite mixed with ionic liquid and with paraffin binder can unravel the potential atomistic factors responsible for such enhancement. Based on an experimentally optimized binder/graphite mass ratio, which has been reported to be crucial for such a performance, comprehensive simulations (at 323 K) are performed with the ensembles involving an ionic liquid binder (1-butyl-3-methylimidazolium hexafluorophosphate, [C(4)mim]PF6) and a paraffin binder (n-C20H42) mixed with graphite comprising large-size hexagonal-shaped double graphene plates. Structural analysis indicates both binders form only a monolayer on the graphite surface, covering the surface locally by IL but all-encompassing by paraffin. With charged and uncharged graphite, the IL monolayer tends to cover mainly the graphite center without approaching the edge planes. On the contrary, a monolayer of the paraffin binder covers uniformly the center, near the center, and the edge planes. Cations and anions of the IL form well-defined two dimensional pentagonal matrixes with characteristic high adsorption energy, almost 2.4 times higher than paraffin adsorption. The cation and anion coordination ability of the IL is responsible for such a local distribution. The simulation of these phenomena under experimental conditions unravels strong two-dimensional coordination properties inherent to the ionic liquid when distributed over the graphite surface. This direct MD simulation comparison of the IL properties with an organic liquid counterpart, made for the first time, can be used to explain the high electroanalytical performance (electron transfer) of CPEs involving an IL binder over paraffin binders.
机译:最近,使用离子液体(IL)粘合剂制造的碳糊电极(CPE)已显示出比常规石蜡粘合剂更高的电分析性能。石墨与离子液体和石蜡粘合剂混合的分子动力学(MD)模拟可以揭示导致这种增强的潜在原子因素。根据实验优化的粘合剂/石墨质量比(据报道对于这种性能至关重要),对包含离子液体粘合剂(1-丁基-3-甲基咪唑六氟磷酸盐, [C(4)mim] PF6)和与石墨混合的石蜡粘合剂(n-C20H42),包括大尺寸的六角形双石墨烯板。结构分析表明,两种粘合剂仅在石墨表面上形成单层,被IL局部覆盖,但被石蜡全包围。对于带电和不带电的石墨,IL单层倾向于主要覆盖石墨中心而不会靠近边缘平面。相反,石蜡粘合剂的单层均匀地覆盖中心,中心附近和边缘平面。 IL的阳离子和阴离子形成定义明确的二维五边形基质,具有高吸附能,几乎是石蜡吸附量的2.4倍。 IL的阳离子和阴离子配位能力是造成这种局部分布的原因。在实验条件下对这些现象的仿真揭示了当分布在石墨表面上时离子液体固有的强二维配位特性。首次对IL特性与有机液体对应物进行的直接MD模拟比较可用于解释CLP相对于石蜡粘合剂具有较高的电分析性能(电子转移)。

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