Title of article :
Effect of Magnetic Field on Surface Morphology and Magnetic Properties of FeCu/Cu Nano layers Prepared by Electrodeposition Technique: Investigation of Magneto-hydrodynamic Effect
Author/Authors :
Merikhi ، M. نويسنده Department of Physics, Faculty of Science, Arak 3815688349, Arak, Iran , , Nabiyouni ، G. نويسنده Department of Physics, Faculty of Science, Arak 3815688349, Arak, Iran , , Ghanbari، B. نويسنده Young Researchers and Elite Club, Arak Branch, Islamic Azad University, Arak, Iran ,
Issue Information :
فصلنامه با شماره پیاپی 0 سال 2015
Abstract :
در اين مقاله تاثير ميدان مغناطيسي بر مورفولوژي سطح، ساختار و خواص مغناطيسي لايه نازك FeCu/Cu بررسي شد. لايه نازك با روش نشست الكتروشيميايي تحت كنترل پتانسيل ثابت بر روي شيشه/Au2PdAgتهيه شد. طي نشست الكتروشيميايي ميداني معادل 5000 و 7000 اورستد اعمال شد. لايه نازك در دو شرايط حضور و غياب ميدان مغناطيسي تهيه و مقايسه گرديد. نتايج نشان داد كه ميدان مغناطيسي بر مورفولوژي سطح، ساختار و خواص مغناطيسي لايه نازك FeCu/Cuتاثيرگذار است . فيلم تهيه شده توسط پراش اشعه X ، ميكروسكوپ الكتروني روبشي، مغناطيس سنج ارتعاشي نمونه و آناليز EDSبررسي شد.
Abstract :
In this paper, the effect of magnetic field on the morphology, structure
and magnetic properties of electrodeposited FeCu/Cu thin films was
investigated. The films were deposited on Au2PdAg/glass substrates
using electrodeposition technique in potentiostatic control. The
magnetic fields of 5000 and 7000 Oe were applied on deposition bath
during deposition. Two series of thin films were prepared in the same
deposition conditions, one in the presence and the other in absence of
magnetic field and the products were compared. The results indicate
that applying the magnetic field has a significant effect on the growth
process, i.e. morphology, crystal structure and magnetic properties of
the films. The morphology and structure of the FeCu/Cu Nano layers
were studied using X-ray diffraction (XRD) and scanning electron
microscopy (SEM). The weight percentages of the elements in the
deposited multilayers were determined by energy dispersive X-ray
spectroscopy (EDS). Magnetic properties of thin films were studied
using the vibrating sample magnetometer (VSM).
Journal title :
Journal of NanoStructures
Journal title :
Journal of NanoStructures