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Enhanced Sensitivity for Electrochemical Detection Using Screen-Printed Diamond Electrodes via the Random Microelectrode Array Effect

机译:丝网印刷金刚石电极通过随机微电极阵列效应提高电化学检测的灵敏度

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The electrochemical properties of screen-printed diamond electrodes with various insulating polyester (PES) resin binder/boron-doped diamond powder (BDDP) ratios were investigated for high sensitivity electrochemical, detection. For PES/BDDP weight ratios in the range of 0.3-0.5, the BDDP-printed electrodes exhibited cyclic voltammetry (CV) characteristics for Fe(CN)(6)(3-/4-) that are typical of a planar electrode, whereas microelectrode-like characteristics with sigmoidal CV curves were observed for PES/BDDP ratios of 1.0-2.0. Cu elemental mapping images of copper-electrodeposited BDDP-printed electrodes indicated the formation of island structures with conductive BDDP domains surrounded by an insulating PES matrix for large PES/BDDP ratios. The electrochemical detection of ascorbic acid (AA) and 8-hydroxy-2'-deoxyguanosine (8-OHdG) was also investigated using polycrystalline BDD thin-film and BDDP-printed electrodes (PES/BDDP ratio = 0.3 and 1.0). As a result, the signal-to-background (S/B) ratios for the voltammetric detection of AA and 8-OHdG were in the order BDDP-printed electrode (PES/BDDP = 1.0) > BDDP-printed electrode (PES/BDDP = 0.3) > polycrystalline BDD thin film electrode, based on the large faradaic current with respect to the background current. Therefore, the BDDP-printed electrode with a large insulating binder/BDDP ratio has the potential for use as a disposable electrode for electrochemical detection. The electrode is cheaper, lighter and more sensitive than conventional BDD electrodes.
机译:为了高灵敏度电化学检测,研究了具有各种绝缘聚酯(PES)树脂粘合剂/掺硼金刚石粉(BDDP)比的丝网印刷金刚石电极的电化学性能。对于PES / BDDP重量比在0.3-0.5的范围内,BDDP打印的电极表现出Fe(CN)(6)(3- / 4-)的循环伏安(CV)特性,而这是平面电极的典型特性。对于PES / BDDP比为1.0-2.0,观察到具有S形曲线的微电极状特征。铜电沉积BDDP印刷电极的Cu元素映射图像表明,对于较大的PES / BDDP比,具有导电BDDP域的岛结构已被绝缘PES基质包围。还使用多晶BDD薄膜和BDDP印刷电极(PES / BDDP比= 0.3和1.0)研究了抗坏血酸(AA)和8-羟基-2'-脱氧鸟苷(8-OHdG)的电化学检测。结果,用于伏安法检测AA和8-OHdG的信噪比(S / B)依次为BDDP打印电极(PES / BDDP = 1.0)> BDDP打印电极(PES / BDDP = 0.3)>多晶BDD薄膜电极,基于相对于背景电流的大法拉第电流。因此,具有大的绝缘粘合剂/ BDDP比率的BDDP印刷电极具有用作电化学检测的一次性电极的潜力。与传统的BDD电极相比,该电极更便宜,更轻且灵敏度更高。

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