“…The frequency dependence of ac conductivity σ ac could be explained by the following equation: 62–64 σ ac = constant × (2π f ) S …”
Section: Resultsmentioning
confidence: 99%
“…10) revealed enhanced hopping of the charge carriers between the sides of the potential barrier with increasing applied frequency. 59,61 The frequency dependence of ac conductivity s ac could be explained by the following equation: [62][63][64]…”
A Ni2+ nanocomplex based on a heterocyclic ligand containing a pyrazole moiety was developed in this work, and its electric conductivity and dielectric characteristics were studied.
“…The frequency dependence of ac conductivity σ ac could be explained by the following equation: 62–64 σ ac = constant × (2π f ) S …”
Section: Resultsmentioning
confidence: 99%
“…10) revealed enhanced hopping of the charge carriers between the sides of the potential barrier with increasing applied frequency. 59,61 The frequency dependence of ac conductivity s ac could be explained by the following equation: [62][63][64]…”
A Ni2+ nanocomplex based on a heterocyclic ligand containing a pyrazole moiety was developed in this work, and its electric conductivity and dielectric characteristics were studied.
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