دراسة تأثير السمك في الخصائص الكهربائية المتناوبة لأغشية أوكسيد النحاس CuO

Other Title(s)

A study the effect of thin thickness on the A. C electrical properties of CuO thin films

Author

ندى خضير عباس

Source

مجلة أم سلمة للعلوم

Issue

Vol. 3, Issue 4 (31 Dec. 2006), pp.572-575, 4 p.

Publisher

University of Baghdad College of Science for Women

Publication Date

2006-12-31

Country of Publication

Iraq

No. of Pages

4

Main Subjects

Electronic engineering

Abstract EN

In this research the effect of thickness on the A.C electrical conductivity of CuO thin films have been studied at room temperature and at different thickness ( 1500, 1800, 2000 ,2500 ) A .

The films were prepared using the method of chemical spray pyrolysis on glass substrate heated to (653 K ).

The results showed that there were increasing in A.C electric conductivity when thin film thickness and the frequency have been increased.

Another conclusion can be noticed, that the capacitance, the imaginary part of dielectric constant and the lose factor were decreases with the increasing of the frequency , while they were increases by mean of increasing thickness ,while the real part of dielectric constant were decrease when the thickness and the frequency increased .

American Psychological Association (APA)

ندى خضير عباس. 2006. دراسة تأثير السمك في الخصائص الكهربائية المتناوبة لأغشية أوكسيد النحاس CuO. مجلة أم سلمة للعلوم،مج. 3، ع. 4، ص ص. 572-575.
https://search.emarefa.net/detail/BIM-368411

Modern Language Association (MLA)

ندى خضير عباس. دراسة تأثير السمك في الخصائص الكهربائية المتناوبة لأغشية أوكسيد النحاس CuO. مجلة أم سلمة للعلوم مج. 3، ع. 4 (2006)، ص ص. 572-575.
https://search.emarefa.net/detail/BIM-368411

American Medical Association (AMA)

ندى خضير عباس. دراسة تأثير السمك في الخصائص الكهربائية المتناوبة لأغشية أوكسيد النحاس CuO. مجلة أم سلمة للعلوم. 2006. مج. 3، ع. 4، ص ص. 572-575.
https://search.emarefa.net/detail/BIM-368411

Data Type

Journal Articles

Language

Arabic

Notes

يتضمن مراجع ببليوجرافية : ص. 575

Record ID

BIM-368411