异烟酸
生物传感器
复合数
六方晶系
电化学
棱锥(几何)
DNA
纳米技术
材料科学
化学
化学工程
组合化学
核化学
结晶学
有机化学
物理化学
复合材料
生物化学
电极
光学
物理
酰肼
工程类
作者
Delun Zheng,Qingxiang Wang,Feng Gao,Qing‐Hua Wang,Weiwei Qiu,Fei Gao
标识
DOI:10.1016/j.bios.2014.04.011
摘要
Three CdS materials with different shapes (i.e., irregular, rod-like, and elongated hexagonal-pyramid) were hydrothermally synthesized through controlling the molar ratio of Cd(2+) to thiourea. Electrochemical experiments showed that the elongated hexagonal-pyramid CdS (eh-CdS) modified on glassy carbon electrode (GCE) had the higher electrical conductivity than the other two forms. Then the eh-CdS modified GCE was further modified with a layer of poly-isonicotinic acid (PIA) through electro-polymerization in IA solution to enhance the stability and functionality of the interface. The layer-by-layer modification process was characterized by atomic force microscopy and electrochemistry. Then 5'-amino functionalized DNA was immobilized on the electrode surface through coupling with the carboxylic groups derived from PIA-eh-CdS composite film. The hybridization performance of the developed biosensor was evaluated using methylene blue as redox indicator, and the results showed that the peak currents of methylene blue varied with target concentrations in a wide linear range from 1.0 × 10(-14)M to 1.0 × 10(-9)M with a low detection limit of 3.9 × 10(-15)M. The biosensor also showed high stability and good discrimination ability to the one-base, three-base mismatched and non-complementary sequence.
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