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A Facile Approach to Fabrication of Hexagonal-Phase NaYF4:Yb3+, Er3+ Hollow Nanospheres: Formation Mechanism and Upconversion Luminescence
其他题名论文其他题名
Zhao J. W.; Liu X. M.; Cui D.; Sun Y. J.; Yu Y.; Yang Y. F.; Du C.; Wang Y.; Song K.; Liu K.; Lu S. Z.; Kong X. G.; Zhang H.
2010
发表期刊European Journal of Inorganic Chemistry
ISSN1434-1948
卷号12页码:1813-1819
摘要The hexagonal-phase NaYF4:Yb3+, Er3+ hollow nanospheres (HNS) have been successfully prepared for the first time by means of a hydrothermal route with the aid of polyethylenimine (PEI) as a surfactant. The nitrogen adsorption/desorption isotherms demonstrated the porous nature of the NaYF4 HNS. The formation mechanism was explored based on the effects of the reaction parameters. The NaYF4 solid spheres underwent a dissolution-recrystallisation transformation and a hollowing process when the hydrothermal reaction time was prolonged. The localised Ostwald ripening mechanism was proposed to account for the formation of NaYF4 HNS, in which loose aggregations were found to be crucial. The upconversion luminescence of NaYF4:Yb3+, Er3+ HNS was also investigated. It is expected that these NaYF4 FINS might have potential in applications as building blocks for biolabels and drug-delivery.
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/24764
专题中科院长春光机所知识产出
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Zhao J. W.,Liu X. M.,Cui D.,et al. A Facile Approach to Fabrication of Hexagonal-Phase NaYF4:Yb3+, Er3+ Hollow Nanospheres: Formation Mechanism and Upconversion Luminescence[J]. European Journal of Inorganic Chemistry,2010,12:1813-1819.
APA Zhao J. W..,Liu X. M..,Cui D..,Sun Y. J..,Yu Y..,...&Zhang H..(2010).A Facile Approach to Fabrication of Hexagonal-Phase NaYF4:Yb3+, Er3+ Hollow Nanospheres: Formation Mechanism and Upconversion Luminescence.European Journal of Inorganic Chemistry,12,1813-1819.
MLA Zhao J. W.,et al."A Facile Approach to Fabrication of Hexagonal-Phase NaYF4:Yb3+, Er3+ Hollow Nanospheres: Formation Mechanism and Upconversion Luminescence".European Journal of Inorganic Chemistry 12(2010):1813-1819.
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