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Voltammetric Antioxidant Analysis in Mineral Oil Samples Immobilized into Boron-Doped Diamond Micropore Array Electrodes

机译:固定在掺硼金刚石微孔阵列电极中的矿物油样品中的伏安法抗氧化分析

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摘要

Mineral oil microdroplets containing the model antioxidant N,N-didodecyl-N',N'-diethyl-phenylene-diamine (DDPD) are immobilized into a 100 × 100 pore-array (ca. 10 μm individual pore diameter, 100 pm pitch) in a boron-doped diamond electrode surface. The robust diamond surface allows pore filling, cleaning, and reuse without damage to the electrode surface. The electrode is immersed into aqueous electrolyte media, and voltammetric responses for the oxidation of DDPD are obtained. In order to further improve the current responses, 20 wt% of carbon nanofibers are co-deposited with the oil into the pore array. Voltammetric signals are consistent with the oxidation of DDPD and the associated transfer of perchlorate anions (in aqueous 0.1 M NaClO_4) or the transfer of protons (in aqueous 0.1 M HClO_4). From the magnitude of the current response, the DDPD content in the mineral oil can be determined down to less than 1 wt% levels. Perhaps surprisingly, the reversible (or midpoint) potential for the DDPD oxidation in mineral oil (when immersed in 0.1 NaClO_4) is shown to be concentration-dependent and to shift to more positive potential values for more dilute DDPD in mineral oil solutions. An extraction mechanism and the formation of a separate organic product phase are proposed to explain this behavior.
机译:含有模型抗氧化剂N,N-二十二烷基-N',N'-二乙基-苯二胺(DDPD)的矿物油微滴固定在100×100孔阵列中(单个孔直径约10μm,间距为100 pm)在掺硼金刚石电极表面。坚固的金刚石表面可进行孔填充,清洁和重复使用,而不会损坏电极表面。将电极浸入含水电解质介质中,并获得了对DDPD氧化的伏安响应。为了进一步改善电流响应,将20 wt%的碳纳米纤维与油共沉积到孔阵列中。伏安信号与DDPD的氧化以及相关的高氯酸根阴离子转移(在0.1 M NaClO_4水溶液中)或质子转移(在0.1 M HClO_4水溶液中)一致。根据电流响应的大小,可以确定矿物油中的DDPD含量低至小于1 wt%。也许令人惊讶的是,矿物油中的DDPD氧化的可逆(或中点)电势(浸入0.1 NaClO_4中)显示出浓度依赖性,并且在矿物油溶液中,DDPD的稀释度更趋于正电势。提出了一种萃取机理和单独的有机产物相的形成来解释这种行为。

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