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Biyang Deng

Researcher at Guangxi Normal University

Publications -  56
Citations -  1168

Biyang Deng is an academic researcher from Guangxi Normal University. The author has contributed to research in topics: Electrochemiluminescence & Detection limit. The author has an hindex of 15, co-authored 41 publications receiving 616 citations.

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A novel ECL sensor based on a boronate affinity molecular imprinting technique and functionalized SiO2@CQDs/AuNPs/MPBA nanocomposites for sensitive determination of alpha-fetoprotein

TL;DR: The newly constructed boronate-affinity sandwich ECL sensor was successfully applied to the determination of alpha-fetoprotein in serum samples, indicating great potential for application in clinical diagnostics.
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A Novel Carbon Quantum Dots Signal Amplification Strategy Coupled with Sandwich Electrochemiluminescence Immunosensor for the Detection of CA15-3 in Human Serum.

TL;DR: A sensitive sandwich electrochemiluminescence immunosensor was established by employing graphene oxide-PEI-carbon quantum dots-Au nanohybrid as probe to measure carbohydrate antigen 15-3 (CA15-3), a breast cancer biomarker, revealing that the method offers a potential application for the clinical diagnosis of tumor markers.
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Ginkgo leaf-based synthesis of nitrogen-doped carbon quantum dots for highly sensitive detection of salazosulfapyridine in mouse plasma.

TL;DR: This method was successfully applied to detect SASP in mouse plasma and the results show that the SASP recovery range was 96%–101%.
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A highly efficient introduction system for single cell- ICP-MS and its application to detection of copper in single human red blood cells.

TL;DR: A method of simultaneous cell counting and determination of metals in single cells using time-resolved inductively coupled plasma-mass spectrometry (ICP-MS) was reported, which simplifies the introduction of individual and intact cells.
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Facile Preparation of Boron and Nitrogen Codoped Green Emission Carbon Quantum Dots for Detection of Permanganate and Captopril.

TL;DR: Permanganate (MnO4-) quenched boron and nitrogen co-doped carbon quantum dots fluorescence through inner filter effect and static quenching effects and can be employed as a sensitive fluorescence sensing platform for MnO4-.