2022
DOI: 10.1007/s10854-022-08887-2
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Structural, chemical, morphological and optical properties of thin films based on potassium bis(2-methyllactato) borate hemihydrate doped by iodine

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Cited by 1 publication
(2 citation statements)
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“…The bandgap energy values of PEOPEDOT/NiZnFeO4NPs nanocomposite films as a function of NiZnFeO4NPs content percentage were fitted to the following function 3,5,34 : Eg=Eg0A1exptx where: Eg is the bandgap energy of the nanocomposite film at a specific nanoparticle filler concentration, Eg0 is the bandgap energy of the polymer without nanoparticle, A is a constant, and t is an exponent factor. However, the bandgap energy of nanocomposite films is influenced by several factors, including the bandgap energy of the polymer and nanoparticle, the presence of defects, and carrier‐carrier interactions.…”
Section: Resultsmentioning
confidence: 99%
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“…The bandgap energy values of PEOPEDOT/NiZnFeO4NPs nanocomposite films as a function of NiZnFeO4NPs content percentage were fitted to the following function 3,5,34 : Eg=Eg0A1exptx where: Eg is the bandgap energy of the nanocomposite film at a specific nanoparticle filler concentration, Eg0 is the bandgap energy of the polymer without nanoparticle, A is a constant, and t is an exponent factor. However, the bandgap energy of nanocomposite films is influenced by several factors, including the bandgap energy of the polymer and nanoparticle, the presence of defects, and carrier‐carrier interactions.…”
Section: Resultsmentioning
confidence: 99%
“…These new energy levels appear as absorption bands in the extinction coefficient spectra of the nanocomposite films in the 400-600 nm range. 5 The bandgap energy values of PEO À PEDOT= NiZnFeO 4 NPs nanocomposite films as a function of NiZnFeO 4 NPs content percentage were fitted to the following function 3,5,34 :…”
Section: Resultsmentioning
confidence: 99%