Nanomaterials Optoelectronics Laboratory, Polymer Program, Institute of Materials Science, Department of Chemistry, University of Connecticut, Storrs, CT 06269, United States.
Biosens Bioelectron. 2010 Oct 15;26(2):682-8. doi: 10.1016/j.bios.2010.06.064. Epub 2010 Jul 23.
Highly sensitive, long-term stable and reusable microfluidics electrodes have been fabricated and evaluated using H2O2 and hydroquinone as model analytes. These electrodes composed of a 300 nm Pt-black layer situated on a 5 μm thick electrodeposited Au layer, provide effective protection against electrooxidation of an underlying chromium adhesion layer. Using repeated cyclic voltammetric (CV) sweeps in flowing buffer solution, highly sensitive Pt-black working electrodes were realized with five- (four-) decade linear dynamic range for H2O2 (hydroquinone) and low detection limit of 10 nM for H2O2 and 100 nM for hydroquinone. Moreover, high sensitivity for H2O2 was demonstrated at low (0.3 V vs. Ag/AgCl) oxidation potentials, together with long-term stability and reusability for at least 30 days. Microfluidic flow was employed for desorption and reactivation of the nominally planar Pt-black electrodes. Such electrocatalytic surface architecture should be appropriate for long-term electrochemical detection of various molecules and biomolecules as well as in reusable immunoassay configurations.
采用 H2O2 和对苯二酚作为模型分析物,制备并评估了高灵敏度、长期稳定且可重复使用的微流控电极。这些电极由位于 5 µm 厚电沉积 Au 层上的 300 nm Pt 黑层组成,可有效防止底层铬粘附层的电化学氧化。通过在流动缓冲溶液中重复循环伏安 (CV) 扫描,实现了具有五(四)个数量级线性动态范围的高灵敏度 Pt 黑工作电极,H2O2(对苯二酚)的检测下限低至 10 nM,H2O2 的检测下限低至 100 nM。此外,在低(相对于 Ag/AgCl 为 0.3 V)氧化电位下表现出对 H2O2 的高灵敏度,并且至少 30 天具有长期稳定性和可重复性。微流控流动用于名义上平面 Pt 黑电极的解吸和再激活。这种电催化表面结构应该适合于各种分子和生物分子的长期电化学检测,以及可重复使用的免疫分析配置。