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The Seebeck coefficient of the solid and liquid germanium

机译:固体和液体锗的塞贝克系数

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摘要

The knowledge of the Seebeck coefficient of materials is essential in determining the actual solid/liquid interface temperature during the melt growth of crystals. In this study, the Seebeck coefficient of the solid and liquid germanium was measured employing the small Delta T technique. The Seebeck coefficient increased from - 107 mu V/degrees C at 857 degrees C to - 54 mu V/degrees C at 931 degrees C in the solid. However, an average constant value of - 0.6 mu V/degrees C was obtained in the liquid from 938 to 960 degrees C, above which a value of - 18 mu V/degrees C was recorded. Also, when the liquid samples were cooled below the melting point, a melt supercooling was observed, which seemed to be larger with higher melt temperatures. (C) 2005 Springer Science + Business Media, Inc.
机译:了解材料的塞贝克系数对于确定晶体熔融生长过程中的实际固/液界面温度至关重要。在这项研究中,使用小Delta T技术测量了固态和液态锗的塞贝克系数。塞贝克系数从固体中的857°C的-107μV/℃增加到931°C的-54μV/℃。但是,在938至960℃的液体中获得的平均常数值为-0.6μV /℃,在该值之上记录的值为-18μV /℃。另外,当将液体样品冷却至熔点以下时,观察到熔体过冷,其在较高熔体温度下似乎更大。 (C)2005年Springer Science + Business Media,Inc.

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