2016
DOI: 10.1039/c6nj03209e
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Designing different morphologies of NiFe2O4 for tuning of structural, optical and magnetic properties for catalytic advancements

Abstract: Variations adopted in synthetic methodology have incorporated quite interesting and beneficial modifications in structural, magnetic, morphological, surface and catalytic properties.

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Cited by 44 publications
(17 citation statements)
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“…5) is found out to be 1.65 eV. Band gap energy values in the range of 1.43 to 1.78 eV for NiFe2O4 are reported by Manisha Dhiman et al, [18].…”
Section: Band Gap Energy Value From Uv-vis Analysismentioning
confidence: 64%
“…5) is found out to be 1.65 eV. Band gap energy values in the range of 1.43 to 1.78 eV for NiFe2O4 are reported by Manisha Dhiman et al, [18].…”
Section: Band Gap Energy Value From Uv-vis Analysismentioning
confidence: 64%
“…It has wide application for magnetic devices, catalysis, water treatment, magnetic uids and microwave absorbing materials. [5][6][7][8] Unfortunately, pure NiFe 2 O 4 exhibits lower photocatalytic activity owing to fast recombination of photoelectron-hole pairs. 9,10 To improve the photocatalytic activity, many researchers have reported combinations with other semiconductor materials and doping to solve the problem meaningfully.…”
Section: Introductionmentioning
confidence: 99%
“…Because of its large surface area and tunable pores, MOF show great potential for adsorption process [6][7][8][9][10][11][12]. Moreover, magnetic MOF inherit the good performance of MOF such as the rapid separation and recovery of magnetic species [13][14][15]. Among the various MOF adsorbents, MOF-5 is one of the most attractive adsorbents, which is dated back to 1999 [16].…”
Section: Introductionmentioning
confidence: 99%