电化学
材料科学
电催化剂
贵金属
检出限
电极
X射线光电子能谱
纳米片
普鲁士蓝
催化作用
兴奋剂
化学工程
纳米技术
金属
化学
光电子学
有机化学
工程类
物理化学
冶金
色谱法
作者
Wei Shan,Xiuyun Ma,Guobo Chen,Feicui Xu,Haizhou Zhao,Lei Dong,Xuefeng Yan,Zhaoshun Bi,Liang Yu,Meng Qiu
标识
DOI:10.1149/1945-7111/acc0a0
摘要
Electrochemical dopamine (DA) sensors become important for the early diagnosis of psychiatric disorders like schizophrenia and Parkinson’s disease due to their fast response, simplicity, and portability. However, traditional electrode modification materials such as noble metals and metal oxides have shortcomings such as high cost, low conductivity, or limited catalytic performance. Two-dimensional sulfide materials contribute to the smooth electrode reaction because of their ultra-high specific superficial area and favorable electrocatalysis properties, however, their low carrier mobility and poor electroconductibility limit the detection signal. In this paper, Co-doped FePS 3 nanosheets were employed for DA detection for the first time. Fe 0.9 Co 0.1 PS 3 nanosheets exhibited a detection limit of 120 nM, a linear range 0.25–100 μ M and 120–500 μ M, and possessed high recovery and reproducible stability when applied to human serum samples. Furthermore, according to the in situ XPS characterization, S atoms located on the outmost layer of Fe 0.9 Co 0.1 PS 3 nanosheets could be combined with the phenolic hydroxyl oxygen of DA, which makes electrode reaction from DA to dopamine quinone easier. Co-doping can further enhance the above effect, and increase the carrier mobility of FePS 3 nanosheets. This work demonstrated electrochemical sensors based on metal phosphorus trisulfide materials have tremendous potential for future application in mental disorder diagnosis.
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