Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Wu, Jianhua
and
Yan, Bing
2010.
Room‐Temperature Solid‐State Reaction Behavior, Hydrothermal Crystallization and Physical Characterization of NaRE(MoO4)2, and Na5Lu(MoO4)4 Compounds.
Journal of the American Ceramic Society,
Vol. 93,
Issue. 8,
p.
2188.
Liao, Jinsheng
Huang, Huazhong
You, Hangying
Qiu, Xin
Li, Yong
Qiu, Bao
and
Wen, He-Rui
2010.
Photoluminescence properties of NaGd(MoO4)2:Eu3+ nanophosphors prepared by sol–gel method.
Materials Research Bulletin,
Vol. 45,
Issue. 9,
p.
1145.
Tian, Yue
Chen, Baojiu
Hua, Ruinian
Sun, Jiashi
Cheng, Lihong
Zhong, Haiyang
Li, Xiangping
Zhang, Jinsu
Zheng, Yanfeng
Yu, Tingting
Huang, Libo
and
Yu, Hongquan
2011.
Optical transition, electron-phonon coupling and fluorescent quenching of La2(MoO4)3:Eu3+ phosphor.
Journal of Applied Physics,
Vol. 109,
Issue. 5,
Cao, Chunyan
Yang, Hyun Kyoung
Chung, Jong Won
Moon, Byung Kee
Choi, Byung Chun
Jeong, Jung Hyun
and
Kim, Kwang Ho
2011.
Ce3+/Tb3+ activated GdF3, KGdF4, and CeF3 submicro/nanocrystals: Synthesis, phase evolution, and optical properties.
Journal of Materials Research,
Vol. 26,
Issue. 23,
p.
2916.
Cao, Chunyan
Yang, Hyun Kyoung
Moon, Byung Kee
Choi, Byung Chun
Jeong, Jung Hyun
and
Kim, Kwang Ho
2012.
Hydrothermal synthesis, phase evolution, and optical properties of Eu3+-doped KF–YF3 system materials.
Journal of Materials Research,
Vol. 27,
Issue. 23,
p.
2988.
Liao, Jinsheng
Zhou, Dan
You, Hangying
Wen, He-rui
Zhou, Quanhui
and
Yang, Bin
2013.
Hydrothermal synthesis and photoluminescence of NaGd(MoO4)2:Tb3+ novel green phosphor.
Optik,
Vol. 124,
Issue. 12,
p.
1362.
Li, Yuntong
and
Liu, Xiaohua
2014.
Photoluminescence properties of NaY(MoO4)2:Eu3+ phosphor synthesized by microwave assisted hydrothermal method.
Materials Science and Engineering: B,
Vol. 188,
Issue. ,
p.
20.
Krishnan, Rajagopalan
Thirumalai, Jagannathan
Thomas, Sabu
and
Gowri, Mahasampath
2014.
Luminescence and magnetic behaviour of almond like (Na0.5La0.5)MoO4:RE3+ (RE=Eu, Tb, Dy) nanostructures.
Journal of Alloys and Compounds,
Vol. 604,
Issue. ,
p.
20.
Zhang, Wentao
Li, Junfeng
Wang, Yulong
Long, Jianping
and
Qiu, Kehui
2015.
Synthesis and luminescence properties of NaLa(MoO 4 ) 2− x AG x :Eu 3+ (AG = SO 4 2 − , BO 3 3 − ) red phosphors for white light emitting diodes.
Journal of Alloys and Compounds,
Vol. 635,
Issue. ,
p.
16.
Wang, Yulong
Zhang, Wentao
Li, Junfeng
and
Long, Jianping
2016.
Effect of MoO 4 2− partial substitution on optical enhancement of LaNa(MoO 4 ) 2 :Dy 3+ phosphors for white light emitting diodes.
Materials Science in Semiconductor Processing,
Vol. 41,
Issue. ,
p.
277.
Loiko, P.A.
Vilejshikova, E.V.
Mateos, X.
Serres, J.M.
Dashkevich, V.I.
Orlovich, V.A.
Yasukevich, A.S.
Kuleshov, N.V.
Yumashev, K.V.
Grigoriev, S.V.
Vatnik, S.M.
Bagaev, S.N.
and
Pavlyuk, A.A.
2016.
Spectroscopy of tetragonal Eu:NaGd(WO4)2 crystal.
Optical Materials,
Vol. 57,
Issue. ,
p.
1.
Wang, Huayu
Zhou, Xuan
Yan, Jinghui
and
Lian, Hongzhou
2018.
(Ln 3+ = Eu 3+ /Dy 3+ /Dy 3+ , Eu 3+ ) doped NaGd(MoO 4 ) 2 phosphors with uniform morphologies: Hydrothermal synthesis, luminescent properties, energy transfer and color tunable emission.
Journal of Luminescence,
Vol. 195,
Issue. ,
p.
170.