Khairullina Evgeniia M, Panov Maxim S, Andriianov Vladimir S, Ratautas Karolis, Tumkin Ilya I, Račiukaitis Gediminas
Saint Petersburg State University 7/9 Universitetskaya nab. St. Petersburg 199034 Russia
Center for Physical Sciences and Technology 231 Savanoriu ave. Vilnius 02300 Lithuania.
RSC Adv. 2021 May 30;11(32):19521-19530. doi: 10.1039/d1ra01565f. eCollection 2021 May 27.
In the current study, the method of Selective Surface Activation Induced by Laser (SSAIL) was used for the fabrication of metallic and bimetallic structures based on copper and gold on the surface of glass and glass-ceramics. It was shown that the fabricated electrodes are suitable for non-enzymatic detection of biologically essential analytes such as glucose. The implemented approach allows performing high-rate metallization of various dielectrics. Voltammetric methods were applied to evaluate the electrocatalytic activity of the obtained structures, which were used as working electrodes. The most promising results were revealed by copper-gold electrode structures manufactured on glass-ceramics. For these structures, sensitivity towards glucose sensing was 3060 μA mM cm. The linear range of glucose detection varied between 0.3 and 1000 μM. Besides, the manufactured electrodes exhibited high selectivity and long-term stability.
在当前研究中,采用激光诱导选择性表面活化法(SSAIL)在玻璃和玻璃陶瓷表面制备了基于铜和金的金属及双金属结构。结果表明,所制备的电极适用于对葡萄糖等生物必需分析物进行非酶检测。所采用的方法能够实现对各种电介质的高速金属化。采用伏安法评估所获得结构的电催化活性,这些结构用作工作电极。在玻璃陶瓷上制造的铜 - 金电极结构显示出最有前景的结果。对于这些结构,对葡萄糖传感的灵敏度为3060 μA mM cm。葡萄糖检测的线性范围在0.3至1000 μM之间。此外,所制造的电极具有高选择性和长期稳定性。