Mohammadnezhad K, Ahour F, Keshipour S
Nanotechnology Research Group, Faculty of Chemistry, Urmia University, Urmia, Iran.
Department of Nanochemistry, Nanotechnology Research Center, Urmia University, Urmia, Iran.
Sci Rep. 2024 Mar 12;14(1):5982. doi: 10.1038/s41598-024-56231-x.
To precise screening concentration of ascorbic acid (AA), a novel electrochemical sensor was prepared using palladium nanoparticles decorated on nitrogen-doped graphene quantum dot modified glassy carbon electrode (PdNPs@N-GQD/GCE). For this purpose, nitrogen doped GQD nanoparticles (N-GQD) were synthesized from a citric acid condensation reaction in the presence of ethylenediamine and subsequently modified by palladium nanoparticles (PdNPs). The electrochemical behavior of AA was investigated, in which the oxidation peak appeared at 0 V related to the AA oxidation. Considering the synergistic effect of Pd nanoparticles as an active electrocatalyst, and N-GQD as an electron transfer accelerator and electrocatalytic activity improving agent, PdNPs@N-GQD hybrid materials showed excellent activity in the direct oxidation of AA. In the optimal conditions, the voltammetric response was linear in the range from 30 to 700 nM and the detection limit was calculated to be 23 nM. The validity and the efficiency of the proposed sensor were successfully tested and confirmed by measuring AA in real samples of chewing tablets, and fruit juice.
为了精确筛选抗坏血酸(AA)的浓度,制备了一种新型电化学传感器,该传感器采用修饰在氮掺杂石墨烯量子点修饰玻碳电极(PdNPs@N-GQD/GCE)上的钯纳米颗粒。为此,通过柠檬酸在乙二胺存在下的缩合反应合成了氮掺杂的GQD纳米颗粒(N-GQD),随后用钯纳米颗粒(PdNPs)进行修饰。研究了AA的电化学行为,其中与AA氧化相关的氧化峰出现在0 V处。考虑到钯纳米颗粒作为活性电催化剂以及N-GQD作为电子转移促进剂和电催化活性增强剂的协同效应,PdNPs@N-GQD杂化材料在AA的直接氧化中表现出优异的活性。在最佳条件下,伏安响应在30至700 nM范围内呈线性,计算得出的检测限为23 nM。通过测量咀嚼片和果汁等实际样品中的AA,成功测试并证实了所提出传感器的有效性和效率。