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Shouzhuo Yao
Researcher at Hunan University
Publications - 501
Citations - 17343
Shouzhuo Yao is an academic researcher from Hunan University. The author has contributed to research in topics: Cyclic voltammetry & Biosensor. The author has an hindex of 66, co-authored 483 publications receiving 15864 citations. Previous affiliations of Shouzhuo Yao include Hunan Normal University.
Papers
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Electrochemical piezoelectric quartz crystal impedance study on the interaction between concanavalin A and glycogen at Au electrodes.
TL;DR: The report studies concanavalin A (Con A)-glycogen interaction on gold electrode surfaces by electrochemical piezoelectric quartz crystal impedance (EPQCI) method and finds the binding of lectin with carbohydrate has emerged as a "new frontier" in chemical/biological field.
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Determination of aristolochic acid I and its metabolites in cell culture with a hyphenated high-performance liquid chromatographic technique for cell toxicology.
TL;DR: A simple, rapid and sensitive high-performance liquid chromatography-diode array detection-fluorescence detection (HPLC-DAD-FLD) method was developed and validated for the analysis of AA I and its metabolites in cell culture medium for the first time and appears to be a suitable tool for the cellular toxicokinetic study with acceptable precisions and recoveries.
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Circuit network analysis method applied to surface acoustic wave impedance system in liquids
TL;DR: In this article, the circuit network theory was applied to analyze a surface acoustic wave (SAW) impedance system constructed from a 61-MHz SAW resonator and a pair of conductive electrodes in series.
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Molecularly Imprinted Solid‐Phase Extraction of Epicatechin from Tea Beverage
TL;DR: In this paper, a molecularly imprinted polymer (MIP) was prepared by using epicatechin as the template molecule, and the synthesized MIP was characterized by infrared spectroscopy and scanning electron microscopy.
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Construction and application of phenytoin anion-selective electrode based on bulk acoustic wave (BAW) sensing technique
TL;DR: The construction of an anion-selective bulk acoustic wave (BAW) sensor for the direct determination of phenytoin sodium for the first time was found to be sensitive, rapid and easy to handle without pretreatment of the sample.