Energy-transfer efficiency in Eu-doped ZnO thin films: the effects of oxidative annealing on the dynamics and the intermediate defect states.
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[1] Vinod Kumar,et al. Origin of the red emission in zinc oxide nanophosphors , 2013 .
[2] G. Mondio,et al. Structural and optical properties of pulsed laser deposited ZnO thin films , 2013 .
[3] A. R. Daud,et al. XPS and optical studies of different morphologies of ZnO nanostructures prepared by microwave methods , 2013 .
[4] G. Xing,et al. Origin of green emission and charge trapping dynamics in ZnO nanowires , 2013 .
[5] O. M. Slyotov,et al. Annealing effect on the near-band edge emission of ZnO , 2013 .
[6] H. Strunk,et al. How to describe concentration quenching in rare earth doped semiconductors , 2013 .
[7] Kazuki Yoshida,et al. Concentration quenching in Eu-doped ZnO grown by sputtering-assisted metalorganic chemical vapor deposition , 2012 .
[8] S. Gupta,et al. Structure and site selective luminescence of sol–gel derived Eu:Sr2SiO4 , 2012 .
[9] G. Xing,et al. Defects-Mediated Energy Transfer in Red-Light-Emitting Eu-Doped ZnO Nanowire Arrays , 2011 .
[10] Xiaoyang Liu,et al. Synthesis and optical properties of Eu-doped ZnO nanosheets by hydrothermal method , 2011 .
[11] D. Hoyt,et al. Acceptors in ZnO nanocrystals , 2011 .
[12] D. Xiong,et al. Influence of Annealing and Europium-Doping on the Structure and Optical Properties of ZnO Thin Films Grown on Quartz Substrate by Magnetron Sputtering , 2011 .
[13] Z. Fang,et al. Structural, optical and magnetic properties of Eu-doped ZnO films , 2011 .
[14] Risto M. Nieminen,et al. Energetics of intrinsic defects and their complexes in ZnO investigated by density functional calculations , 2011 .
[15] G. Pacchioni,et al. Transition levels of defect centers in ZnO by hybrid functionals and localized basis set approach. , 2010, The Journal of chemical physics.
[16] C. Shan,et al. MgZnO/ZnO p–n junction UV photodetector fabricated on sapphire substrate by plasma-assisted molecular beam epitaxy , 2010 .
[17] Hongjuan Liu,et al. Power- and energy-dependent photoluminescence of Eu3+ incorporated and segregated ZnO polycrystalline nanobelts synthesized by a facile combustion method followed by heat treatment , 2010 .
[18] L. Ono,et al. Effects of annealing on properties of ZnO thin films prepared by electrochemical deposition in chloride medium , 2010 .
[19] Anderson Janotti,et al. Fundamentals of zinc oxide as a semiconductor , 2009 .
[20] A. Furube,et al. Femtosecond Visible-to-IR Spectroscopy of TiO2 Nanocrystalline Films: Elucidation of the Electron Mobility before Deep Trapping† , 2009 .
[21] K. Meral,et al. Oxygen deficiency effects on recombination lifetime and photoluminescence characteristics of ZnO thin films; correlation with crystal structure , 2009 .
[22] Yongsheng Liu,et al. Optical Spectroscopy of Eu3+ Doped ZnO Nanocrystals , 2009 .
[23] Y. Tong,et al. Use of additives in the electrodeposition of nanostructured Eu3+/ZnO films for photoluminescent devices. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[24] D. Klug,et al. Mechanism of photocatalytic water splitting in TiO2. Reaction of water with photoholes, importance of charge carrier dynamics, and evidence for four-hole chemistry. , 2008, Journal of the American Chemical Society.
[25] Chun-Hua Yan,et al. Efficient Energy Transfer in Monodisperse Eu-Doped ZnO Nanocrystals Synthesized from Metal Acetylacetonates in High-Boiling Solvents , 2008 .
[26] A. Speghini,et al. Structure−Luminescence Correlations in Europium-Doped Sol−Gel ZnO Nanopowders , 2008 .
[27] Y. Kanemitsu,et al. Fabrication and optical properties of Eu3+-doped ZnO nanospheres and nanorods , 2008 .
[28] M. J. Soares,et al. Optical studies of ZnO nanocrystals doped with Eu3+ ions , 2007 .
[29] Charles H. Patterson,et al. Role of defects in ferromagnetism in Zn1- xCoxO : A+ hybrid density-functional study , 2006 .
[30] A. Djurišić,et al. Defects in ZnO nanorods prepared by a hydrothermal method. , 2006, The journal of physical chemistry. B.
[31] Jun Lin,et al. Tunable photoluminescent and cathodoluminescent properties of ZnO and ZnO:Zn phosphors. , 2006, The journal of physical chemistry. B.
[32] H. Arakawa,et al. Trapping dynamics of electrons and holes in a nanocrystalline TiO2 film revealed by femtosecond visible/near-infrared transient absorption spectroscopy , 2006 .
[33] H. Morkoç,et al. A COMPREHENSIVE REVIEW OF ZNO MATERIALS AND DEVICES , 2005 .
[34] Chi‐Kuang Sun,et al. Ultrafast carrier dynamics in ZnO nanorods , 2005 .
[35] A. Zunger,et al. Anion vacancies as a source of persistent photoconductivity in II-VI and chalcopyrite semiconductors , 2005, cond-mat/0503018.
[36] Jiye Fang,et al. Host-Sensitized Luminescence of Dy3 + in Nanocrystalline β Ga2 O 3 Prepared by a Pechini-Type Sol-Gel Process , 2005 .
[37] H. Morkoç,et al. Excitonic fine structure and recombination dynamics in single-crystalline ZnO , 2004 .
[38] G. Boschloo,et al. Ultrafast relaxation dynamics of charge carriers relaxation in ZnO nanocrystalline thin films , 2004 .
[39] M. Haemori,et al. Discovery and Optimization of New ZnO‐Based Phosphors Using a Combinatorial Method , 2003 .
[40] S. Studenikin,et al. Time-resolved luminescence and photoconductivity of polycrystalline ZnO films , 2002 .
[41] G. Ceder,et al. First-principles study of native point defects in ZnO , 2000 .
[42] David Skinner,et al. Femtosecond study of the size‐dependent charge carrier dynamics in ZnO nanocluster solutions , 1995 .
[43] P. Kamat,et al. Photophysics and photochemistry of quantized ZnO colloids , 1992 .
[44] J. Vossen. Control of Film Properties by rf-Sputtering Techniques , 1971 .
[45] P. D. Davidse. Theory and practice of RF sputtering , 1967 .
[46] L. G. Uitert,et al. Quenching Interactions between Rare‐Earth Ions , 1962 .