在裸金电极上自组装4,4-二甲基联苯硫醇(MTP)膜(MTP/AuSAMs),再电还原氯金酸溶液修饰纳米金,得纳米金双巯基修饰金电极(NG/MTP/Au).研究了多巴胺(DA)和抗坏血酸(AA)在NG/MTP/Au上的电化学行为,发现该修饰电极对DA、AA的氧化具有良好的电催化作用,多巴胺(DA)和抗坏血酸(AA)的氧化峰电位差达到155mV,可以实现对此二组分混合溶液的选择性测定.差分脉冲法测得的峰电流与DA、AA浓度分别在1.5X10^-7~1X10^-4mol·L^-1和3.5X10^-6~1.0X10^-3~mol·L^-1范围内呈线性关系。检测限(3σ)分别为1.5X10^-7mol·L^-1“和1.2X10^-6“mol·L^-1,相关系数0.998.
A new approach to construct an ampermetric biosensor was described. The 4,4-bis (methanethiol) biphenyl (MTP) is adsorbed on to a bare gold electrode to make serf-assembled monolayers (MTP/Au SAMs). Then electrodeposited 2mg/mL HAuCI4 at -200 mV, NG/MTP/Au electrode was prepared. When a differential pulse voltammetric (DPV) technique was used, the peak separation between DA and AA is 155 mV. Hence, the selective determination of dopamine (DA) and ascorbate (AA) in the binary mixture system can be performed. Under the chosen conditions, the peak currents are correspondent linearly to the concentrations of DA and AA in the range of 5.0× 10 ^-7- 1 × 10 ^-4 mol.L^-1 and 3.5 × 10^ -6 - 1.0 × 10^-3mol . L^-1 , respectively. The correlation coefficients were 0. 998. The detection limit were 1.5 × 10^ -7 mol . L^-1 and 1.2 ×10 ^-6 mol . L^-lfor DA and AA.