TY - JOUR
T1 - Sc3+-induced morphology, phase structure, and upconversion luminescence evolution of YF3:Yb/Er nanocrystals
AU - Li, Hongyu
AU - Huang, Qianwen
AU - Wang, Yangbo
AU - Chen, Kun
AU - Xie, Juan
AU - Pan, Yue
AU - Su, Haiquan
AU - Xie, Xiaoji
AU - Huang, Ling
AU - Huang, Wei
N1 - Publisher Copyright:
© 2017 The Royal Society of Chemistry.
PY - 2017
Y1 - 2017
N2 - The increasingly wide application of lanthanide-based upconversion nanocrystals has generated an urgent need to control and manipulate both the morphological and optical properties of these materials. In this work, Sc3+ ions were utilized to modulate the morphology, phase structure, and upconversion luminescence properties of YF3:Yb/Er nanocrystals. At a Sc3+ doping concentration of 0-25 mol% the YF3:Yb/Er nanocrystals gradually changed from ∼16 nm rhombic nanodots to ∼57 nm zigzag-shaped nanorods, and the upconversion luminescence was enhanced by 5 times. The co-existence of the YF3:Yb/Er and ScF3:Yb/Er nanocrystals was then seen at 25-60 mol% Sc3+ doping, and finally the ScF3:Yb/Er nanocrystals became the only product at >60 mol% Sc3+ doping. A mechanism of oriented attachment growth has been proposed to explain the morphology evolution, and the upconversion luminescence details have been discussed from the crystal structure point of view.
AB - The increasingly wide application of lanthanide-based upconversion nanocrystals has generated an urgent need to control and manipulate both the morphological and optical properties of these materials. In this work, Sc3+ ions were utilized to modulate the morphology, phase structure, and upconversion luminescence properties of YF3:Yb/Er nanocrystals. At a Sc3+ doping concentration of 0-25 mol% the YF3:Yb/Er nanocrystals gradually changed from ∼16 nm rhombic nanodots to ∼57 nm zigzag-shaped nanorods, and the upconversion luminescence was enhanced by 5 times. The co-existence of the YF3:Yb/Er and ScF3:Yb/Er nanocrystals was then seen at 25-60 mol% Sc3+ doping, and finally the ScF3:Yb/Er nanocrystals became the only product at >60 mol% Sc3+ doping. A mechanism of oriented attachment growth has been proposed to explain the morphology evolution, and the upconversion luminescence details have been discussed from the crystal structure point of view.
UR - http://www.scopus.com/inward/record.url?scp=85022201734&partnerID=8YFLogxK
U2 - 10.1039/c7tc02118f
DO - 10.1039/c7tc02118f
M3 - 文章
AN - SCOPUS:85022201734
SN - 2050-7534
VL - 5
SP - 6450
EP - 6456
JO - Journal of Materials Chemistry C
JF - Journal of Materials Chemistry C
IS - 26
ER -