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This document explores the synthesis, characterization, and properties of nickel-doped silica nanocomposites. The study focuses on the effects of varying nickel concentrations on the structural and electronic properties of the materials. Using advanced techniques like X-ray diffraction and transmission electron microscopy, we analyze the resulting composite's performance. Insights into potential applications in catalysis and electronics are discussed, highlighting the significance of these materials in contemporary technology.
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a b udihrN 8 = 8 11 . . 11 = 0.72 ap*Ni<>kn[ dSi>Smi> an[ dSi>Sn[ ap*Ni<>kmi> f[rvv&> ap*Ni<>k dSi>S = a b = 0.7272727272………
2 1 = 100 50 375 125 x 3 3 = = = 1000 125 x 8 8 ap*Ni<>kn[ dSi>Smi> an[ dSi>Sn[ ap*Ni><kmi> f[rvv&> dSi>S ap*Ni<>k ap&nriv(t< dSi>S udihrN • 0.02 = 2) 0.375 =
. = 0.7 . . 10x – x = 7.7 - 0.7 ji[ x = 0.7 . 7 x = t[Y) 10x = 7.7 . 9 . 7 0.7 = 9 ap*Ni<>kn[ dSi>Smi> an[ dSi>Sn[ ap*Ni><kmi> f[rvv&> dSi>S ap*Ni<>k p\kir -2 p&nriv(t<t dSi>S udihrN-1 0.77777777…… t[Y) 9x = 7
. . = 0.14 . . = 0.14 ji[ x . . 14 t[Y) 100x = 14.14 . . . . x = 99 100x – x = 14.14 – 0.14 . . 14 0.14 = 99 ap*N<i>kn[ dSi>Smi an[ dSi>S n[ ap*Ni<>kmi> f[rvv& dSi>S ap*Ni<>k p\kir -2 p&nriv(t<t dSi>S udihrN - 2 0.1414141414…… t[Y) 99x = 14