JOURNAL ARTICLE

Electrical transport properties of copper substituted magnesium aluminium ferrites

V. N. MulayK. B. REDDYV.D. ReddyP. Venugopal Reddy

Year: 1992 Journal:   physica status solidi (a) Vol: 130 (2)Pages: 397-406   Publisher: Wiley

Abstract

Thermopower and electrical conductivity studies of copper substituted Mg-Al ferrites are undertaken over the temperature range 300 to 700 K. On the basis of the sign of the Seebeck coefficient (S), the ferrites under study can be considered as n-type semiconductors. A model is arrived at using Seebeck coefficient data to evaluate the charge carrier concentration. The temperature variation of Seebeck coefficient, carrier concentration (n), and mobility (m̈e) is also discussed. Using the data a conduction mechanism is suggested. Im Temperaturbereich von 300 bis 700 K werden die Thermospannung und die elektrische Leitfähigkeit von Kupfer-substituierten Mg-Al-Ferriten untersucht. Auf der Grundlage des Vorzeichens des Seebeck-Koeffizienten (S), können die untersuchten Ferrite als n-leitende Halbleiter angesehen werden. Um die Ladungsträgerkonzentration zu berechnen, wird unter Benutzung der Werte des Seebeckkoeffizienten ein Modell abgeleitet. Die Temperaturvariation des Seebeckkoeffizienten, der Trägerkonzentration (n) und der Beweglichkeit (m̈e) werden ebenfalls diskutiert. Unter Benutzung dieser Werte wird ein Leitungsmechanismus vorgeschlagen.

Keywords:
Seebeck coefficient Thermoelectric effect Electrical resistivity and conductivity Copper Atmospheric temperature range Materials science Aluminium Die (integrated circuit) Charge carrier Condensed matter physics Chemistry Analytical Chemistry (journal) Thermal conductivity Metallurgy Electrical engineering Thermodynamics Composite material Nanotechnology Physics Optoelectronics

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11
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0.63
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Citation History

Topics

Microwave Dielectric Ceramics Synthesis
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Magnetic Properties and Synthesis of Ferrites
Physical Sciences →  Materials Science →  Materials Chemistry
Electromagnetic wave absorption materials
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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