Univ. Grenoble Alpes, CNRS, DCM UMR 5250, F 38000, Grenoble, France.
J Mater Chem B. 2020 Apr 29;8(16):3566-3573. doi: 10.1039/c9tb01926j.
WS2 nanotubes functionalized with carboxylic acid functions (WS2-COOH) were used for improved immobilization of the enzyme tyrosinase in order to form an electrochemical biosensor towards catechol and dopamine. The nanotubes were deposited on glassy carbon electrodes using a dispersion-filtration-transfer procedure to assure the reproducibility of the deposits. After the electrochemical and morphological characterization of these WS2-COOH nanotube deposits, the formed biosensors showed very satisfying performance towards catechol detection with a linear range of 0.6-70 μmol L-1 and a sensitivity of 10.7 ± 0.2 mA L mol-1. The apparent Michaelis Menten constant of this system is slightly lower than the KM value of tyrosinase in solution, reflecting an excellent accessibility of the active site of the enzyme combined with a good mass transport of the target molecule through the deposit. For dopamine detection, we observed an accumulation of this substrate due to electrostatic interactions between the amine function of dopamine and the carboxylic acid groups of the nanotubes. This led to improved signal capture at low dopamine concentrations. With linear ranges of 0.5-10 μmol L-1 and 10-40 μmol L-1, and respective sensitivities of 6.2 ± 0.7 mA L mol-1 and 3.4 ± 0.4 mA L mol-1, the overall sensor performance is within the average of comparable results using carbon nanotubes. Nonetheless, the simplified handling of these nanotubes and their reduced environmental impact make these WS2-COOH nanotubes a promising nanomaterial for biosensing applications.
WS2 纳米管经羧基功能化(WS2-COOH)后,用于改善酶酪氨酸酶的固定化,以形成用于儿茶酚和多巴胺的电化学生物传感器。通过分散-过滤-转移程序将纳米管沉积在玻碳电极上,以确保沉积物的重现性。在对这些 WS2-COOH 纳米管沉积物进行电化学和形态学表征之后,所形成的生物传感器在检测儿茶酚方面表现出非常令人满意的性能,线性范围为 0.6-70 μmol L-1,灵敏度为 10.7 ± 0.2 mA L mol-1。该体系的表观米氏常数略低于溶液中酪氨酸酶的 KM 值,这反映了酶的活性位点具有极好的可及性,并且目标分子通过沉积物的质量传输良好。在检测多巴胺时,由于多巴胺的胺功能与纳米管的羧基之间的静电相互作用,观察到这种底物的积累。这导致在低多巴胺浓度下改善了信号捕获。线性范围分别为 0.5-10 μmol L-1 和 10-40 μmol L-1,相应的灵敏度分别为 6.2 ± 0.7 mA L mol-1和 3.4 ± 0.4 mA L mol-1,整体传感器性能在使用碳纳米管的可比结果的平均值范围内。尽管如此,这些纳米管的简化处理及其对环境的影响较小,使 WS2-COOH 纳米管成为生物传感应用中很有前途的纳米材料。