Xu Xin, Ma Ze, Su Zekun, Li Danqing, Dong Xufeng, Huang Hao, Qi Min
Key Laboratory of Energy Materials and Devices (Liaoning Province), School of Materials Science and Engineering, Dalian University of Technology, Dalian 116024, China.
The Second Affiliated Hospital of Dalian Medical University, Dalian 116023, China.
Nanomaterials (Basel). 2022 Oct 26;12(21):3761. doi: 10.3390/nano12213761.
Catalysts with high catalytic activity and good stability are desirable in the electrocatalytic oxidation of glucose. Herein, Pt concave nanocubes with high-index facets (HIFs) supported by carbon black (Pt CNC/CB) are prepared through a hydrothermal method. The experimental results demonstrate that the peak current densities in different potential regions on the Pt CNC/CB anode are 0.22, 0.20, and 0.60 mA cm. The catalytic process of the glucose oxidation reaction is investigated in electrolytes with different pH values. Better stability is achieved by Pt CNC/CB than by Pt concave nanocubes (Pt CNCs). Abundant surface defects with low-coordinated atom numbers, such as steps, kinks, and edges, served as active sites in the electrocatalytic oxidation of glucose. With the addition of carbon black, the catalytic activity can be improved by facilitating the full exposure of the active surface defects on the HIFs of the Pt CNCs. Moreover, to address the aggregation of Pt CNCs, caused by the high surface energy of HIFs, the introduction of carbon material is an effective way to preserve the HIFs and thus enhance the stability of the catalyst. Hence, the prepared Pt CNC/CB electrocatalyst has great potential to be applied in the electrooxidation of glucose.
在葡萄糖的电催化氧化中,需要具有高催化活性和良好稳定性的催化剂。在此,通过水热法制备了由炭黑负载的具有高指数晶面(HIFs)的铂凹面纳米立方体(Pt CNC/CB)。实验结果表明,Pt CNC/CB阳极在不同电位区域的峰值电流密度分别为0.22、0.20和0.60 mA cm。在不同pH值的电解质中研究了葡萄糖氧化反应的催化过程。Pt CNC/CB比铂凹面纳米立方体(Pt CNCs)具有更好的稳定性。大量具有低配位原子数的表面缺陷,如台阶、扭结和边缘,在葡萄糖的电催化氧化中充当活性位点。通过促进Pt CNCs的HIFs上活性表面缺陷的充分暴露,添加炭黑可以提高催化活性。此外,为了解决由HIFs的高表面能引起的Pt CNCs的聚集问题,引入碳材料是保留HIFs从而提高催化剂稳定性的有效方法。因此,所制备的Pt CNC/CB电催化剂在葡萄糖电氧化中具有巨大的应用潜力。