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Chunmei Zhang

Researcher at Queensland University of Technology

Publications -  48
Citations -  1561

Chunmei Zhang is an academic researcher from Queensland University of Technology. The author has contributed to research in topics: Band gap & Catalysis. The author has an hindex of 18, co-authored 40 publications receiving 987 citations. Previous affiliations of Chunmei Zhang include Northwest University (China) & Beijing Institute of Technology.

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First-Principles Prediction of a Room-Temperature Ferromagnetic Janus VSSe Monolayer with Piezoelectricity, Ferroelasticity, and Large Valley Polarization

TL;DR: A strain-driven 90° lattice rotation is found in the magnetic VSSe monolayer with an extremely high reversal strain, indicating an intrinsic ferroelasticity and the combination of piezoelectricity and valley polarization make magnetic 2D Janus VSSe a tantalizing material for potential applications in nanoelectronics, optoelectronic, and valleytronics.
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Electronic and optical properties of lead-free hybrid double perovskites for photovoltaic and optoelectronic applications

TL;DR: It is predicted that the organic-inorganic hybrid double perovskite (FA)2BiCuI6 is the best candidate in photovoltaic and optoelectronic applications as the material has superior optical and electronic properties.
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Single Pt atom decorated graphitic carbon nitride as an efficient photocatalyst for the hydrogenation of nitrobenzene into aniline

TL;DR: In this article, a single-atom photocatalyst (Pt@g-C3N4) was proposed for the hydrogenation of nitrobenzene to aniline under visible light.
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First-Principles Prediction of Spin-Polarized Multiple Dirac Rings in Manganese Fluoride

TL;DR: In this article, a spin-polarized multiple Dirac ring feature is reported for the first time in an experimentally realized material, and the 3D band structure further reveals that MnF3 possesses rings of Dirac nodes.
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2D-3D Mixed Organic-Inorganic Perovskite Layers for Solar Cells with Enhanced Efficiency and Stability Induced by n-Propylammonium Iodide Additives.

TL;DR: An effective method to enhance the stability of the FA0.5 perovskite film through the incorporation of n-propylammonium iodide (PAI) is reported, and enhanced 17.23% PCE with suppressed hysteresis was obtained with the 5% PAI additive (molar ratio) in perovSkite solar cells that retained nearly 50% of the initial efficiency after 2000 h in air without encapsulation under 45% average relative humidity.