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Title Thermodynamic properties of ZnO with in mie-gruneisen hypothesis
Authors Patel, A.D.
Khambholja, S.G.
Bhatt, N.K.
Thakore, B.Y.
Jani, A.B.
ORCID
Keywords EOS
thermal expansion
тепловое расширение
теплове розширення
thermal pressure
тепловое давление
тепловий тиск
ZnO
Type Article
Date of Issue 2011
URI http://essuir.sumdu.edu.ua/handle/123456789/27878
Publisher Видавництво СумДУ
License
Citation Thermodynamic properties of ZnO with in mie-gruneisen hypothesis [Текст] / A.D. Patel, S.G. Khambholja, N.K. Bhatt et al. // Journal of Nano- and Electronic Physics. — 2011. — Vol. 3, № 1, Part V : Proceedings of the International Symposium on Semiconductor Materials and Devices (ISSMD-2011), Vadodara, India, 28-30 January 2011. — P. 884-887.
Abstract Zink oxide (mineral name: Zincite) is an attractive wide band gap semiconductor due to its large number of industrial applications such as in the production of solar cells, liquid-crystal displays, electrochromic devices, LED, as well as adhesive taps, automobile tires, ceramics, glass, varistors, etc. It is due to versatile nature of ZnO, in we have studied its thermal properties at high temperatures. Theoretically, complete ab initio investigations at elevated temperatures are restricted due largely to computational complexity of many-body nature. We have therefore used an consistent iterative scheme to include thermal effect by combining the universal equation of state (UEOS) to the Mie-Gruneisen hypothesis. It is demonstrated that from the knowledge of cohesive properties at ambient condition various thermodynamic properties can be predicted at finite temperatures and pressures. For example, presently calculated relative volume-thermal expansions, static EOS are in good accordance with experimental results. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/27878
Appears in Collections: Журнал нано- та електронної фізики (Journal of nano- and electronic physics)

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China China
9402294
Egypt Egypt
3
Germany Germany
195
India India
4799794
Japan Japan
1
Lithuania Lithuania
1
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Ukraine Ukraine
4799793
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4799793
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