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Chunying Duan

Researcher at Dalian University of Technology

Publications -  258
Citations -  8225

Chunying Duan is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 41, co-authored 199 publications receiving 6352 citations.

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Dual-Excitation Polyoxometalate-Based Frameworks for One-Pot Light-Driven Hydrogen Evolution and Oxidative Dehydrogenation.

TL;DR: Co-POM enabled the hydrogen evolution and dehydrogenation of tetrahydroisoquinoline without the presence of any other additives and indicated the advantages of the combining functional polyoxometalate-based catalysts and porous characters of the coordination polymers for the development of highly active heterogeneous catalysts.
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Magnetic fluorescent bifunctional spin-crossover complexes.

TL;DR: Two mononuclear Fe(ii) complexes are synthesised by combining a spin-crossover unit and a fluorescent ligand to achieve bifunctionality and temperature-dependent fluorescence emission spectra exhibit the coexistence of spin crossover and fluorescence.
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Gadolinium(III)–fluorescein complex as a dual modal probe for MRI and fluorescence zinc sensing

TL;DR: A bimodal imaging Gd-Zpy probe based on magnetic resonance imaging and fluorescence sensing has been synthesized and characterized in this paper, which features a bright green emission and a turn-on fluorescent response manner with high sensitivity for Zn 2+ in aqueous solution.
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Novel chitosan-based fluorescent materials for the selective detection and adsorption of Fe3+ in water and consequent bio-imaging applications.

TL;DR: A series of fluorescent materials synthesized by modification of chitosan (CS) with 4-fluoresceincarboxaldehyde (Fluo) and N-methyl-carbazole-3-aldehyde (Cb) feature excellent water-solubility and exhibit highly selective fluorescence response to Fe(3+) in environment and biological fields.
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Discrimination of Various Amine Vapors by a Triemissive Metal-Organic Framework Composite via the Combination of a Three-Dimensional Ratiometric Approach and a Confinement-Induced Enhancement Effect.

TL;DR: This work provides a new AC sensing mechanism (confinement effect) that can induce "turn on" response and proves that the accuracy and selectivity of composite sensor can be greatly improved through the combination of 3-D recognition method and the confinement effect.