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Temperature dependence of thermodynamic function in Zn4SnSe6 and Zn4SnSe6:Co2+(0.5mol%) single crystals  

Kim, Nam-Oh (조선이공대학 전기과)
Kim, Hyung-Gon (조선이공대학 전기과)
Kim, Duck-Tea (동아인재대학 방송과)
Sung, Heo-Jun (전남대학교 치과대학)
Publication Information
The Transactions of the Korean Institute of Electrical Engineers P / v.52, no.2, 2003 , pp. 68-73 More about this Journal
Abstract
$Zn_4SnSe_6$ and $Zn_4SnSe_6:Co^{2+}$ single crystals were grown by the chemical transport reaction(CTR) method. They were crystallized in the monoclinic structure. These temperature dependence of the optical energy gap were closely investigated over the temperature range 10[K]~300[K]. The direct energy gaps of $Zn_4SnSe_6$ and $Zn_4SnSe_6$:$Co^{2+}$ single crystals were given by 2.146[eV] and 2.042[eV] at 300[K]. The temperature dependence of the optical energy gap is well presented by the Varshni equation.
Keywords
Chemical transport reaction method; $Zn_4SnSe_6$; $Zn_4SnSe_6$:$Co^{2+}$; Optical absorption; Varshni equation; Optoelectronic device;
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