Shanghai Key Laboratory of Functional Materials Chemistry, and Research Centre of Analysis and Test, East China University of Science and Technology, Shanghai 200237, PR China.
Talanta. 2012 Sep 15;99:1062-7. doi: 10.1016/j.talanta.2012.07.039. Epub 2012 Jul 23.
The sluggish kinetic-controlled glucose oxidation reaction on Pt electrodes is well recognized as the most critical issue that blocks the development and commercialization of enzyme-free glucose sensors, and increasing attention is being focused on improving the analytical performances of these nonenzymatic sensors through exploring new Pt-based catalysts. In the present research, we synthesized novel Pt-Pd nanoflakes (Pt-Pd NFs) with three-dimensional architectures on a homemade screen-printed gold film electrode (SPGFE) substrate using a facile electrochemical deposition without any template, and further investigated the properties of the as-fabricated Pt-Pd NFs/SPGFE for enzymeless glucose detection. The results reveal that the proposed Pt-Pd nanostructure can provide preeminent electrocatalytic activity and excellent selectivity for enzyme-free glucose sensing under simulative physiological conditions, mainly attributing to its attractive structure, large active surface and appropriate applied potential. The resulting Pt-Pd NFs/SPGFE offers linear current responses for glucose with the concentration upper limit to 16 mM. The obtained sensitivity is calculated to be as high as 48.0 μA cm(-2) mM(-1) in the presence of 0.15 M chlorides ions, and practical applications for blood sample analysis are also demonstrated. The proposed Pt-Pd structure is considered as a great potential building block for the fabrication of nonenzymatic electrochemical glucose sensors.
Pt 电极上动力学控制的葡萄糖氧化反应缓慢,这被认为是阻碍无酶葡萄糖传感器发展和商业化的最关键问题,因此人们越来越关注通过探索新型 Pt 基催化剂来提高这些非酶传感器的分析性能。在本研究中,我们使用一种简单的无模板电化学沉积方法,在自制的丝网印刷金膜电极(SPGFE)基底上合成了具有三维结构的新型 Pt-Pd 纳米薄片(Pt-Pd NFs),并进一步研究了所制备的 Pt-Pd NFs/SPGFE 用于无酶葡萄糖检测的性能。结果表明,所提出的 Pt-Pd 纳米结构在模拟生理条件下对无酶葡萄糖传感具有卓越的电催化活性和优异的选择性,这主要归因于其吸引人的结构、大的活性表面和适当的应用电位。所得的 Pt-Pd NFs/SPGFE 提供了用于葡萄糖的线性电流响应,其浓度上限可达 16 mM。在存在 0.15 M 氯化物离子的情况下,获得的灵敏度高达 48.0 μA cm(-2) mM(-1),并展示了实际用于血液样本分析的应用。所提出的 Pt-Pd 结构被认为是用于制造非酶电化学葡萄糖传感器的有前途的构建基块。