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Effect of platinum nanoparticle deposition parameters on hydrogen peroxide transduction for applications in wearable electrochemical glucose biosensors

机译:铂纳米颗粒沉积参数对过氧化氢转导的影响,用于可穿戴式电化学葡萄糖生物传感器

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Enhanced interest in wearable biosensor technology over the past decade is directly related to the increasing prevalence of diabetes and the associated requirement of daily blood glucose monitoring. In this work we investigate the platinum-carbon transduction element used in traditional first-generation glucose biosensors which rely on the concentration of hydrogen peroxide produced by the glucose-glucose oxidase binding scheme. We electrodeposit platinum nanoparticles on a commercially-available screen printed carbon electrode by stepping an applied current between 0 and 7.12 mA/cm~2 for a varying number of cycles. Next, we examine the trends in deposition and the effect that the number of deposition cycles has on the sensitivity of electrochemical glucose sensing. Results from this work indicate that applying platinum nanoparticles to screen printed carbon via electrodeposition from a metal salt solution improves overall biosensor sensitivity. This work also pinpoints the amount of platinum (i.e., number of deposition cycles) that maximizes biosensor sensitivity in an effort to minimize the use of the precious metals, viz., platinum, in electrode fabrication. In summary, this work quantifies the relationship between platinum electrodeposition and sensor performance, which is crucial in designing and producing cost-effective sensors.
机译:在过去的十年中,人们对可穿戴式生物传感器技术的兴趣增加与糖尿病的患病率上升以及日常血糖监测的相关要求直接相关。在这项工作中,我们研究了传统的第一代葡萄糖生物传感器中使用的铂-碳转导元件,该传感器依赖于葡萄糖-葡萄糖氧化酶结合方案产生的过氧化氢的浓度。通过将施加的电流在0到7.12 mA / cm〜2之间步进不同的循环次数,我们将铂纳米颗粒电沉积在可商购的丝网印刷碳电极上。接下来,我们检查沉积趋势以及沉积循环数对电化学葡萄糖感测灵敏度的影响。这项工作的结果表明,通过从金属盐溶液中进行电沉积将铂纳米颗粒应用于丝网印刷的碳,可改善整体生物传感器的灵敏度。这项工作还查明了使生物传感器灵敏度最大化的铂的数量(即沉积循环数),以尽量减少电极制造中贵金属(即铂)的使用。总而言之,这项工作量化了铂电沉积与传感器性能之间的关系,这对于设计和生产具有成本效益的传感器至关重要。

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