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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.

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The Ag+-G interaction inhibits the electrocatalytic oxidation of guanine--a novel mechanism for Ag+ detection.

TL;DR: Among the heavy metal ions examined, only Ag(+) showed the strongest inhibitory effect on the electrocatalytic oxidation of guanine at the multi-walled carbon nanotubes modified glassy carbon electrode (CNTs/GC).
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Development of a highly robust solid phase microextraction fiber based on crosslinked methyl methacrylate-polyhedral oligomeric silsesquioxane hybrid polymeric coating.

TL;DR: The developed SPME-HPLC method for the determination of PAHs using the MMA-POSS hybrid coating achieved good linearity with good correlation coefficients and low detection limits in the range of 0.006 to 0.05ng mL(-1) (S/N=3).
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Titrations with piezoelectric monitoring : Part 1. Fundamental theory and titration of acids and bases

TL;DR: In this paper, the use of a piezoelectric quartz crystal detector is proposed for monitoring the course of a titration reaction by observation of the frequency shift of the oscillating crystal.
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Facile Synthesis of Prussian Blue-Filled Multiwalled Carbon Nanotubes Nanocomposites: Exploring Filling/Electrochemistry/Mass-Transfer in Nanochannels and Cooperative Biosensing Mode

TL;DR: In this article, mild and selective filling of multiwalled carbon nanotubes (MWCNTs) with Prussian blue (PB) to explore the filling/electrochemistry/mass-transfer in nanochannels and the biosensing mode of nanochannel interior-exterior cooperation.
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A biomimetic colorimetric logic gate system based on multi-functional peptide-mediated gold nanoparticle assembly

TL;DR: This nanoparticle-based peptide logic system presents a valid strategy to illustrate peptide information processing and provides a practical platform for executing peptide computing or peptide-related multiplexing sensing, implying that the controllable nanomaterial assembly is a promising and potent methodology for the advancement of biomimetic bio-logic computation.