Ultrasensitive electrochemical sensing of dopamine by using dihydroxylatopillar[5]arene-modified gold nanoparticles and anionic pillar[5]arene-functionalized graphitic carbon nitride

被引:0
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作者
Xiaoping Tan
Shuhua He
Xi Liu
Genfu Zhao
Ting Huang
Long Yang
机构
[1] Yangtze Normal University,Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering
[2] Southwest Forestry University,Key Laboratory for Forest Resources Conservation and Utilization in the Southwest Mountains, Ministry of Education, Yunnan Province Key Laboratory of Wood Adhesives and Glued Products, School of Materials Science and Engineeri
来源
Microchimica Acta | 2019年 / 186卷
关键词
Multicomponent nanomaterial; Hybrid materials; Nanomaterials synthesis; Macrocyclic hosts; Host-guest interaction; Molecular recognition; Functionalized pillar[5]arene; Supramolecular sensor; Sensing platform; Electrochemical detection;
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学科分类号
摘要
An ultrasensitive and highly selective electrochemical method is described for the determination of dopamine (DA). It is based on the use of a multi-functional nanomaterial composed of water-soluble pillar[5]arene (WP5), dihydroxylatopillar[5]arene (2HP5)-modified gold nanoparticles (GNPs), and graphitic carbon nitride (g-C3N4), with an architecture of type 2HP5@GNP@WP5@g-C3N4. The modified GNPs were prepared in the presence of 2HP5 that acts as reducing agent and stabilizer in the formation of GNPs. 2HP5@GNP acts as an electrocatalyst in sensing DA. The WP5@g-C3N4 nanocomposite is obtained by π interaction between WP5 and g-C3N4 after sonication in the presence of WP5. The composite serves as a host for recognition and gathering DA on the surface of the electrode. The host-guest recognition mechanism between WP5 and DA is studied by 1H NMR and UV-vis. The electrode, best operated at a working potential of 0.18 V (vs. SCE), works in the concentration range of 0.012–5.0 μM DA and has a 4 nM detection limit.
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