Growth and thermal properties of tri-allylthiourea cadmium chloride (ATCC) crystal

The tri-allylthiourea cadmium chloride crystal grown was characterized by recording the powder X-ray diffraction pattern and indexing the diffracting planes. The thermal expansion coefficients along a- and c-axes are 2.19×10 −5 and 6.15×10 −5 K −1, respectively. The specific heat of the crystal was...

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Veröffentlicht in:Journal of crystal growth 2003-08, Vol.256 (1), p.183-187
Hauptverfasser: Sun, H.Q., Yuan, D.R., Wang, X.Q., Lü, Y.Q., Sun, Z.H., Wei, X.C., Duan, X.L., Luan, C.N., Lü, M.K., Xu, D.
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container_end_page 187
container_issue 1
container_start_page 183
container_title Journal of crystal growth
container_volume 256
creator Sun, H.Q.
Yuan, D.R.
Wang, X.Q.
Lü, Y.Q.
Sun, Z.H.
Wei, X.C.
Duan, X.L.
Luan, C.N.
Lü, M.K.
Xu, D.
description The tri-allylthiourea cadmium chloride crystal grown was characterized by recording the powder X-ray diffraction pattern and indexing the diffracting planes. The thermal expansion coefficients along a- and c-axes are 2.19×10 −5 and 6.15×10 −5 K −1, respectively. The specific heat of the crystal was measured to be 590.43 J/mol K at 293.15 K. The thermal decomposition process was analyzed according to the result of differential thermal analysis and PXRD patterns of residues at different temperatures.
doi_str_mv 10.1016/S0022-0248(03)01344-7
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subjects A1. Thermal characterization
A1. X-ray diffraction
A2. Growth from solutions
B1. Cadmium compound
B2. Nonlinear optical material
Cross-disciplinary physics: materials science
rheology
Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Growth from solutions
Materials science
Methods of crystal growth
physics of crystal growth
Nonlinear optical crystals
Optical materials
Optics
Physics
title Growth and thermal properties of tri-allylthiourea cadmium chloride (ATCC) crystal
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