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Yuexian Liu

Researcher at Hebei University

Publications -  6
Citations -  36

Yuexian Liu is an academic researcher from Hebei University. The author has contributed to research in topics: Tafel equation & Graphene. The author has an hindex of 3, co-authored 6 publications receiving 17 citations.

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Fe2O3 and Co bimetallic decorated nitrogen doped graphene nanomaterial for effective electrochemical water split hydrogen evolution reaction

TL;DR: In this article, a series of different proportion bimetallic uploaded nitrogen-doped graphene materials (Fe2O3-Co NPs-N-GR) were successfully synthesized through a simple, green and cost-effective method for efficient hydrogen evolution reaction (HER).
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Highly dispersed cobalt decorated uniform nitrogen doped graphene derived from polydopamine positioning metal-organic frameworks for highly efficient electrochemical water oxidation

TL;DR: In this paper, highly dispersed cobalt nanoparticles decorated uniform nitrogen doped graphene (CoNPs-N-GR) was designed synthesized in order to achieve high performance noble metal-free electrochemical catalyst for effective water splitting.
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Design synthesis of a controllable flower-like Pt-graphene oxide architecture through electrostatic self-assembly for DNA damage biomarker 8-hydroxy-2'-deoxyguanosine biosensing research.

TL;DR: The fabricated PtNF-GO architecture was used for the detection of 8-OHdG generated from the damaged DNA sample, which can be used to evaluate and confirm the mechanism of DNA damage, and it is of great importance in gene diagnosis, clinical and life sciences.
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Convenient one step synthesis of molybdenum carbide embedded N-doped carbon nanolayer hybrid architecture using cheap cotton as precursor for efficient hydrogen evolution

TL;DR: In this paper, a two-dimensional coupled hybrid of molybdenum carbide embedded N-doped carbon nanolayer architecture (MoCx-N/CNL) was developed for hydrogen evolution reaction (HER) catalysts.
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Template, surfactant, stabilizer free controllable synthesis of various morphologies platinum decorated ordered mesoporous carbon nano architecture for high–performance electrochemical sensing

TL;DR: In this article, spherical, flower and urchin-like platinum nanoparticles decorated ordered mesoporous carbon (OMC) architecture were synthesized through a facile strategy without any template, surfactant and stabilizer.