2007
DOI: 10.1016/j.jeurceramsoc.2007.01.020
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Preparation by solar physical vapor deposition (SPVD) and nanostructural study of pure and Bi doped ZnO nanopowders

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Cited by 17 publications
(4 citation statements)
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“…Additionally, doping the materials with a bigger ionic radius causes a shift to higher angles in XRD diffraction peaks. This estimation is also supported by a previous study that mentions the huge differences between the atomic radius of Bi +3 (1.20 Å) and Zn +2 (0.74 Å) [23]. FWHM of the samples given in Figure 6, shifts to the higher angles with an increment of Bi doping.…”
Section: Resultssupporting
confidence: 87%
“…Additionally, doping the materials with a bigger ionic radius causes a shift to higher angles in XRD diffraction peaks. This estimation is also supported by a previous study that mentions the huge differences between the atomic radius of Bi +3 (1.20 Å) and Zn +2 (0.74 Å) [23]. FWHM of the samples given in Figure 6, shifts to the higher angles with an increment of Bi doping.…”
Section: Resultssupporting
confidence: 87%
“…Методом лазерной абляции также можно синтезировать частицы оксидов никеля, индия и титана. В работах [13] синтезированные частицы последних соединений характеризуются размерами 10-50 нм.…”
Section: Introductionunclassified
“…ZnO nanopowders having different particle size, shape, morphology, and agglomerate structure could be synthesized by various methods like precipitation, 1-8 sol-gel, [8][9][10][11] micro emulsion precipitation, 12 sonochemical, [13][14][15] hydro-and solvothermal, [16][17][18][19][20] thermal decomposition, 21 microwave-assisted techniques, 22 combustion, [23][24][25] spray pyrolysis, [26][27][28][29] chemical or physical vapor deposition. [30][31][32][33] Each method has its advantages and disadvantages based on its complexity and difficulty, cost, mass production in large quantity, powder properties, and environmental effects.…”
Section: Introductionmentioning
confidence: 99%