“… D = 0.9 λ / β cos θ where D is the crystal diameter, λ is the wavelength of CuKα X-ray, β is FWMH diffracted rays and θ is the Bragg's angle. 26 …”
Section: Methodsmentioning
confidence: 99%
“…5F ). 26 Here, the expression I / m indicates the current density and Δ t signifies the discharge time of the GCD curve. From the specific capacity values determined from GCD analysis, energy density and power density were calculated by using eqn (5) and (6) .…”
Section: Methodsmentioning
confidence: 99%
“…where D is the crystal diameter, l is the wavelength of CuKa Xray, b is FWMH diffracted rays and q is the Bragg's angle. 26 The addition of surfactants has a signicant impact on the regular arrangement of the particles on crystal growth as well as the size of NFNPs. The presence of a long alkyl hydrocarbon chain in both surfactants acts as an impurity and induces an amorphous nature in regular lattice points of ferrite nanoparticles.…”
“… D = 0.9 λ / β cos θ where D is the crystal diameter, λ is the wavelength of CuKα X-ray, β is FWMH diffracted rays and θ is the Bragg's angle. 26 …”
Section: Methodsmentioning
confidence: 99%
“…5F ). 26 Here, the expression I / m indicates the current density and Δ t signifies the discharge time of the GCD curve. From the specific capacity values determined from GCD analysis, energy density and power density were calculated by using eqn (5) and (6) .…”
Section: Methodsmentioning
confidence: 99%
“…where D is the crystal diameter, l is the wavelength of CuKa Xray, b is FWMH diffracted rays and q is the Bragg's angle. 26 The addition of surfactants has a signicant impact on the regular arrangement of the particles on crystal growth as well as the size of NFNPs. The presence of a long alkyl hydrocarbon chain in both surfactants acts as an impurity and induces an amorphous nature in regular lattice points of ferrite nanoparticles.…”
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