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Xikun Zou

Researcher at South China Agricultural University

Publications -  5
Citations -  123

Xikun Zou is an academic researcher from South China Agricultural University. The author has contributed to research in topics: Phosphor & Luminescence. The author has an hindex of 1, co-authored 2 publications receiving 2 citations.

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A highly efficient and suitable spectral profile Cr3+-doped garnet near-infrared emitting phosphor for regulating photomorphogenesis of plants

TL;DR: In this paper, a near-infrared (NIR) emitting phosphor with high external quantum efficiency (EQE), suitable spectral profile, and low thermal quenching remains a huge challenge.
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Architecting ultra-bright silanized carbon dots by alleviating the spin-orbit coupling effect: a specific fluorescent nanoprobe to label dead cells

TL;DR: In this paper, a new class of green-emitting silanized carbon dots (Si-CDs) featuring average size of 2.8nm, ultrahigh photoluminescence quantum yield of 93%, robust photostability, and low cytotoxicity by high-temperature dehalogenation/polymerization process was developed.
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Ultra‐Wide Vis–NIR Mg2Al4Si5O18:Eu2+,Cr3+ Phosphor Containing Unusual NIR Luminescence Induced by Cr3+ Occupying Tetrahedral Coordination for Hyperspectral Imaging

TL;DR: In this article , an unusual NIR-emitting Mg2Al4Si5O18:Cr3+ phosphor offers emission peak at 867 nm with full width at half maximum of 237 nm due to preferential occupation of the AlO4 tetrahedra by Cr3+ as demonstrated by structural and optical properties studies.
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Strategy to Construct High Thermal‐Stability Narrow‐Band Green‐Emitting Si‐CDs@MAs Phosphor for Wide‐Color‐Gamut Backlight Displays

TL;DR: In this article , an efficient confinement and protection strategy through embedding green-emitting silanized carbon dots in mesoporous aluminas (MAs) is proposed to construct MAs and Si-CDs composites with superior luminescence properties.
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Targeting cooling for YAG:Ce3+-based laser-driven lighting device by blending high thermal conductivity AlN in phosphor-sapphire composite

TL;DR: In this article , the authors proposed an efficient heat dissipation approach by blending high thermal conductivity AlN in a YAG:Ce3+-based phosphor-sapphire composite (abbreviated as PSC) plate.