Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education, National & Local United Engineering Laboratory for Power Batteries, Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province, Analysis and Testing Center, Department of Chemistry, Northeast Normal University, Changchun, Jilin Province, 130024, China.
Anal Chim Acta. 2021 Jun 15;1164:338514. doi: 10.1016/j.aca.2021.338514. Epub 2021 Apr 14.
In this study, a clustered carbon aerogel interconnected by carbon balls (CCAI-CB) was prepared as an electrode material to construct a multi-functional electrochemical sensor. CCAI-CB derived from taros (Colocasia esculenta (L). Schott) possesses meso-macroporous structure and plenty of defective sites, and shows notable activity in electrocatalysis as an electrode material. We investigated the application of CCAI-CB modified glassy carbon electrode (CCAI-CB/GCE) for determination of ascorbic acid (AA) and hydrogen peroxide (HO). Compared with carbon nanotubes (CNTs) modified GCE (CNTs/GCE) and bare GCE, CCAI-CB/GCE shows lower detection limit (0.23 μM for AA and 1.31 μM, S/N = 3), higher sensitivities (220.53, 148.86 or 94.39 μA mM cm for AA and 83.06 or 49.07 μA mM cm for HO). Concentrations of AA and HO in real samples were determined at CCAI-CB/GCE with satisfactory detection results obtained. In addition, when the CCAI-CB/GCE was used for electrocatalysis of other biomolecules, it also exhibits high electrochemical activity. Thus, CCAI-CB could be a promising electrode material for the construction of multi-functional electrochemical sensors.
在这项研究中,制备了一种由碳球相互连接的聚类碳气凝胶(CCAI-CB)作为电极材料,构建了一种多功能电化学传感器。CCAI-CB 来源于芋艿(Colocasia esculenta (L). Schott),具有中孔-大孔结构和丰富的缺陷位,作为电极材料在电催化中表现出显著的活性。我们研究了 CCAI-CB 修饰玻碳电极(CCAI-CB/GCE)在测定抗坏血酸(AA)和过氧化氢(HO)中的应用。与碳纳米管(CNTs)修饰玻碳电极(CNTs/GCE)和裸玻碳电极相比,CCAI-CB/GCE 具有更低的检测限(AA 为 0.23 μM,HO 为 1.31 μM,S/N = 3),更高的灵敏度(AA 为 220.53、148.86 或 94.39 μA mM cm,HO 为 83.06 或 49.07 μA mM cm)。用 CCAI-CB/GCE 测定了实际样品中 AA 和 HO 的浓度,得到了令人满意的检测结果。此外,当 CCAI-CB/GCE 用于其他生物分子的电催化时,也表现出高电化学活性。因此,CCAI-CB 可能是构建多功能电化学传感器的一种有前途的电极材料。