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Hui Gu

Researcher at East China Normal University

Publications -  12
Citations -  392

Hui Gu is an academic researcher from East China Normal University. The author has contributed to research in topics: Biosensor & Glucose oxidase. The author has an hindex of 8, co-authored 9 publications receiving 351 citations.

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Photochemical Synthesis of Noble Metal (Ag, Pd, Au, Pt) on Graphene/ZnO Multihybrid Nanoarchitectures as Electrocatalysis for H2O2 Reduction

TL;DR: A series of noble metal (Ag, Au, Pd, and Pt) nanoparticles (NPs) based on new functional graphene were successfully achieved via UV-assisted photocatalytic reduction by ZnO nanorods via mutihybrid nanoarchitectured materials.
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Layer-by-layer self-assembly of functionalized graphene nanoplates for glucose sensing in vivo integrated with on-line microdialysis system.

TL;DR: The novel amperometric biosensor fabricated through the layer-by-layer self-assembling of amine-terminated ionic liquid, and sulfonic acid, and graphene by covalent bonding was proved to be sensitive and reproducible, which enabled its promising application in physiology and pathology.
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Synthesis of graphene supported graphene-like C3N4 metal-free layered nanosheets for enhanced electrochemical performance and their biosensing for biomolecules.

TL;DR: Investigation of their electrochemical behaviour for several redox systems was conducted, which indicated the unique electron structure endows the G-g-C3N4 with faster transfer and proper amount of g-C2N4 could make G-G-C4N4 advantageous in terms of improving the redox current and promoting electron transfer.
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NTA-modified carbon electrode as a general relaying substrate to facilitate electron transfer of SOD: application to in vivo monitoring of O2(-) in a rat brain.

TL;DR: Nitrilotriacetic acid/histidine-tag technology has been developed for in vivo monitoring of superoxide anion in a rat brain during cerebral ischemia/reperfusion processes and direct electron transfer of SOD is greatly enhanced at NTA-modified electrode.
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Size-tunable Pt nanoparticles assembled on functionalized ordered mesoporous carbon for the simultaneous and on-line detection of glucose and L-lactate in brain microdialysate.

TL;DR: This study presents a facile electrochemical method for simultaneous and selective on-line detection of glucose and L-lactate in the striatum of anesthetic rats through the integration of selective electrochemical detection with in vivo microdialysis system.