Shanghai Key Laboratory of Functional Materials Chemistry, East China University of Science and Technology, Shanghai 200237, P.R. China.
Chemistry. 2013 Jul 15;19(29):9534-41. doi: 10.1002/chem.201300234. Epub 2013 Jun 6.
The investigation of highly efficient catalysts for the electrochemical oxidation of glucose is the most critical challenge to commercialize nonenzymatic glucose sensors, which display a few attractive superiorities including the sufficient stability of their properties and the desired reproducibility of results over enzyme electrodes. Herein we propose a new and very promising catalyst: Pt cubes well-dispersed on the porous Cu foam, for the the electrochemical oxidation reaction of glucose in neutral media. The catalyst is fabricated in situ on a homemade screen-printed carbon electrode (SPCE) substrate through initially synthesizing the three-dimensional (3D) porous Cu foam using a hydrogen evolution assisted electrodeposition strategy, followed by electrochemically reducing the platinic precursor simply and conveniently. Field emission scanning electron microscopy (FESEM) and transmission electron microscopy (TEM) proofs demonstrate that Pt cubes, with an average size (the distance of opposite faces) of 185.1 nm, highly dispersed on the macro/nanopore integrated Cu foam support can be reproducibly obtained. The results of electrochemical tests indicate that the cubic Pt-based catalyst exhibits significant enhancement on the catalytic activity towards the electrooxidation of glucose in the presence of chloride ions, providing a specific activity 6.7 times and a mass activity 5.3 times those of commercial Pt/C catalysts at -0.4 V (vs. Ag/AgCl). In addition, the proposed catalyst shows excellent stability of performance, with only a 2.8% loss of electrocatalytic activity after 100 repetitive measurements.
研究高效的催化剂对于将非酶葡萄糖传感器商业化至关重要,非酶葡萄糖传感器具有一些吸引人的优势,包括其性能具有足够的稳定性和结果具有所需的重现性,优于酶电极。本文提出了一种新的、非常有前途的催化剂:高度分散在多孔 Cu 泡沫上的 Pt 立方体,用于在中性介质中葡萄糖的电化学氧化反应。该催化剂通过使用析氢辅助电沉积策略首先合成三维(3D)多孔 Cu 泡沫,然后简单方便地电化学还原 Pt 前驱体,原位制备在自制的丝网印刷碳电极(SPCE)基底上。场发射扫描电子显微镜(FESEM)和透射电子显微镜(TEM)证明,Pt 立方体高度分散在宏观/纳米孔集成的 Cu 泡沫载体上,平均尺寸(相对面之间的距离)为 185.1nm,可以重复获得。电化学测试结果表明,立方 Pt 基催化剂在存在氯离子的情况下对葡萄糖的电氧化具有显著的增强催化活性,在-0.4V(相对于 Ag/AgCl)时提供了比商业 Pt/C 催化剂高 6.7 倍的比活性和高 5.3 倍的质量活性。此外,所提出的催化剂表现出优异的性能稳定性,在 100 次重复测量后,电催化活性仅损失 2.8%。