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CHEM01200604004 Shri Sanyasinaidu Boddu - Homi Bhabha ...

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List of Tables:<br />

Table 1:<br />

Variation in the lattice parameters of GaOOH samples prepared in presence of<br />

different amounts of Eu 3+ ions<br />

Table 2:<br />

Summary of important modes of vibrations in GaOOH nanorods containing<br />

different amounts of Eu 3+ ions along with that of Ga(OH) 3 .<br />

Table 3:<br />

Variation in the lattice parameters of β-Ga 2 O 3 samples prepared in presence of<br />

different amounts of Eu 3+ ions<br />

Table 4:<br />

Lifetime values corresponding to 5 D 4 level of Tb 3+ from GaOOH: Tb 3+ heated at<br />

different temperatures.<br />

Table 5:<br />

Excited state lifetime values of host emission after doping with different<br />

amounts of Tb 3+ ions.<br />

Table 6:<br />

The anisotropy parameter (∆δ) obtained form the components of the chemical<br />

shift tensor (δ 11 , δ 22 and δ 33 ) which are calculated from the side band<br />

intensities observed form the 31 P MAS NMR patterns of GaPO 4 sample<br />

containing different amounts of Eu 3+ ions. The line width of the peak (Γ) is also<br />

given in the table. Error in the chemical shift values is ±1 ppm.<br />

Table 7: Effect of variation volume of solvents on the average crystallite size of SbPO 4<br />

nanomaterials. Errors in the average crystallite size are ±3 nm and obtained<br />

from duplicate measurements.<br />

Table 8: The lifetime values corresponding to the 5 D 4 level of Tb 3+ ions in SbPO 4 :Ce 3+ ,<br />

Tb 3+ nanoribbons/ nanoparticles along with the χ 2 values obtained from fitting.<br />

The numbers in brackets give the relative concentration of each lifetime<br />

components. Error in the lifetime values are within 5% as revealed by the<br />

duplicate measurements<br />

xxxvii

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