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Reductive H2O2 detection at nanoparticle iridium/carbon film electrode and its application as L-glutamate enzyme sensor

机译:纳米铱/碳膜电极上H2O2的还原检测及其在L-谷氨酸酶传感器中的应用

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We prepared a thin film electrode consisting of a 3.3% atomic concentration of iridium nanoparticles dispersed in graphite-like carbon (Ir-NDC) by a simple RF sputtering method. The film structure was characterized by TEM, XPS and AFM. The TEM results showed that the Ir particles, whose average size was 2 nm, were homogenously dispersed in the carbon matrix, XPS revealed two chemical states of Ir (Ir(O) and Ir(IV)) in the film. The Ir-NDC film electrode exhibited excellent electrocatalytic ability with regard to H2O2 reduction with low atomic concentration compared to the bulk Ir electrode. The effect of L-ascorbic acid can be suppressed due to the reductive detection of hydrogen peroxide. We applied this electrode for enzymatic glutamate detection. At a detection potential of -0.15 V (vs. Ag/AgCl), we could measure the concentration of glutamate without interferences from ascorbic acid and oxygen. [References: 30]
机译:我们通过简单的RF溅射方法制备了由3.3%原子浓度的铱纳米粒子分散在类石墨碳(Ir-NDC)中组成的薄膜电极。通过TEM,XPS和AFM对薄膜结构进行了表征。 TEM结果表明,平均粒径为2 nm的Ir颗粒均匀分散在碳基质中,XPS揭示了膜中Ir的两种化学状态(Ir(O)和Ir(IV))。与块状Ir电极相比,Ir-NDC膜电极在低原子浓度的H2O2还原方面显示出优异的电催化能力。由于过氧化氢的还原检测,可以抑制L-抗坏血酸的作用。我们将此电极用于酶促谷氨酸检测。在-0.15 V(vs. Ag / AgCl)的检测电势下,我们可以测量谷氨酸盐的浓度,而不受抗坏血酸和氧气的干扰。 [参考:30]

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