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Bing Yan

Researcher at Tongji University

Publications -  198
Citations -  4026

Bing Yan is an academic researcher from Tongji University. The author has contributed to research in topics: Hybrid material & Luminescence. The author has an hindex of 33, co-authored 196 publications receiving 3731 citations. Previous affiliations of Bing Yan include Beijing Institute of Technology & Nanjing University.

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Fabrication of luminescent layered lanthanide silicate hybrids by hydrothermal and sol–gel technology

TL;DR: In this paper, some novel lanthanide layered silicate hybrid materials were fabricated with hydrothermal synthesis and sol-gel synthesis technology, where the reagents employed were (3-(methacryloyloxy) propyl-trimethoxysilane) (MTMS, H2C C(CH3)COO(CH2)COC(CH 2)3Si(OCH 3)3)3), (3-chloropropyl) trimethoxyssilane (CTMS, Cl (CH2
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Novel kinds of down/up-conversion luminescent rare earth doped fluoride BaMgF4: RE3+ microcrystals

TL;DR: In this paper, the authors realized the liquid phase chemical synthesis of high-quality orthorhombic polycrystalline BaMgF4: RE3+ (RE=Eu, Tb, Sm, Dy, Yb-Er/Tm) compounds with hydrothermal and high-temperature solution methods, respectively.
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Two novel luminescent zinc supramolecular networks with nicotinate derivatives by hydrothermal process

TL;DR: In this paper, two novel zinc compounds [Zn(Enic)2]n (1) (Enic = 5-ethylnicotinate) and [zn(H2O)6][6-OHnic]2 (2) (6-H 2 O 2 O = 6-hydroxynicotinate] have been synthesized under hydrothermal reaction conditions.
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M2Y8(SiO4)6O2: Tb3+ (M = Ca, Sr) phosphors: Sol–gel synthesis from N-2-aminoethylic-3-aminopropyldiethoxysilane and different photoluminescence behavior

TL;DR: In this article, a new silicon source silane crosslinking reagent (N-2-aminoethylic-3-aminopropyldiethoxysilane [NH 2 (CH 2 ) 2 NH(CH 2 ), 3 SiCH 3 (OCH 3 ) 2 ], abbreviated as AEAPMMS) was synthesized with a sol-gel process.
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Sol-gel synthesis of green-luminescence microcrystalline phosphors SrxCa2-xAl2SiO7:yTb3+ zCe3+ by hybrid precursors

TL;DR: SrxCa2−xAl2SiO7:yTb3+, zCe3+ (x = 0.01−0.07, z = 0, 0.2−2.0, y= 0.1−1.07) was synthesized by a hybrid precursor assembly sol-gel technology as discussed by the authors.