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Jianxin Shi

Researcher at Sun Yat-sen University

Publications -  132
Citations -  6239

Jianxin Shi is an academic researcher from Sun Yat-sen University. The author has contributed to research in topics: Phosphor & Photoluminescence. The author has an hindex of 40, co-authored 131 publications receiving 5408 citations. Previous affiliations of Jianxin Shi include Chinese Academy of Sciences & Hong Kong Baptist University.

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Mn2+ and Mn4+ red phosphors: synthesis, luminescence and applications in WLEDs. A review

TL;DR: An overview of recent studies on transition metal activated phosphors can be found in this article, including detailed synthesis routes (solid-state reaction and wet-chemical synthesis) and description of luminescence mechanisms and phosphors' behaviors; discuss their promising applications in white light-emitting diodes.
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Blue photoluminescent zinc coordination polymers with supertetranuclear cores

TL;DR: Two photoluminescent two-and three-dimensional coordination polymers consisting of Zn4O and 4,4′-bipyridine as building blocks have been hydrothermally synthesized and characterized as mentioned in this paper.
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Advanced red phosphors for white light-emitting diodes

TL;DR: In this article, a review summarizes recent achievements concerning red phosphors mainly from three aspects: intensifying absorption bands and reducing lattice defects to increase quantum efficiency; selecting an appropriate coordination environment and altering the lattice symmetry to fine-tune the luminescence spectra; and reducing the nonradiative transition rate and preventing charge imbalance of a luminecence centre to enhance thermal stability.
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A new inorganic-organic photoluminescent material constructed with helical Zn-3(mu(3)-OH)(mu(2)-OH) chains

TL;DR: A photoluminescent inorganic−organic material formulated as [Zn3(μ3-OH)(μ2- OH)(4,4‘-bpy)0.5(4, 4’-oba)2]·0.
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A novel blue-emitting phosphor LiSrPO4:Eu2+ for white LEDs

TL;DR: LiSrPO 4 :Eu 2+ as mentioned in this paper, a blue-emitting phosphor, was prepared by the solid-state reaction and X-ray powder diffraction (XRD) analysis confirmed the formation.