Journal of Inorganic Materials ›› 2016, Vol. 31 ›› Issue (2): 165-170.DOI: 10.15541/jim20150232
• Orginal Article • Previous Articles Next Articles
ZHEN Zhen, ZHAO Bei-Jun, ZHU Shi-Fu, HE Zhi-Yu, CHEN Bao-Jun, HUANG Wei, PU Yun-Xiao, ZHONG Yi-Kai
Received:
2015-05-12
Revised:
2015-09-01
Published:
2016-02-20
Online:
2016-01-15
About author:
ZHEN Zhen. E-mail: zhenzhen_ray@163.com
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CLC Number:
ZHEN Zhen, ZHAO Bei-Jun, ZHU Shi-Fu, HE Zhi-Yu, CHEN Bao-Jun, HUANG Wei, PU Yun-Xiao, ZHONG Yi-Kai. Thermal Expansion Behaviors of CdGeAs2 Crystal[J]. Journal of Inorganic Materials, 2016, 31(2): 165-170.
Temperature/℃ | Structural parameters | |||||
---|---|---|---|---|---|---|
a/nm | This work | c/nm | This work | k | This work | |
25 | 0.59448 | 5.9432 | 1.12126 | 11.2172 | 1.8861 | 1.8874 |
100 | 0.59473 | 5.9467 | 1.12172 | 11.2175 | 1.8861 | 1.8863 |
200 | 0.59542 | 5.9521 | 1.12200 | 11.2179 | 1.8844 | 1.8847 |
300 | 0.59714 | 5.9581 | 1.12244 | 11.2184 | 1.8797 | 1.8829 |
400 | 0.59771 | 5.9648 | 1.22560 | 11.2190 | 1.8781 | 1.8809 |
450 | 0.59798 | 5.9684 | 1.12261 | 11.2194 | 1.8774 | 1.8798 |
Table 1 Lattice parameters of CdGeAs2 at various temperatures
Temperature/℃ | Structural parameters | |||||
---|---|---|---|---|---|---|
a/nm | This work | c/nm | This work | k | This work | |
25 | 0.59448 | 5.9432 | 1.12126 | 11.2172 | 1.8861 | 1.8874 |
100 | 0.59473 | 5.9467 | 1.12172 | 11.2175 | 1.8861 | 1.8863 |
200 | 0.59542 | 5.9521 | 1.12200 | 11.2179 | 1.8844 | 1.8847 |
300 | 0.59714 | 5.9581 | 1.12244 | 11.2184 | 1.8797 | 1.8829 |
400 | 0.59771 | 5.9648 | 1.22560 | 11.2190 | 1.8781 | 1.8809 |
450 | 0.59798 | 5.9684 | 1.12261 | 11.2194 | 1.8774 | 1.8798 |
[1] | BYER R L, KILDAL H, FEIGELSON R S.CdGeAs2-a new nonlinear crystal phasematchable at 10.6 μm.Applied Physics Letters, 1971, 19(7): 237-240. |
[2] | FEIGELSON R S.Improving optical transparency in CdGeAs2 crystal by controlling crystalline defects.Journal of Crystal Growth, 2006, 292(2): 179-187. |
[3] | SCHUNEMANN P G, POLLAK T M.Single crystal growth of large, crack-free CdGeAs2.Journal of Crystal Growth, 1997, 174(1-4): 272-277. |
[4] | FEIGELSON R S, ROUTE R K, SWARTS H W.Solution growth of CdGeAs2.Journal of Crystal Growth, 1975, 28(1): 138-144. |
[5] | FEIGELSON R S, ROUTE R K.Vertical bridgman growth of CdGeAs2 with control of interface shape and orientation.Journal of Crystal Growth, 1980, 49(2): 261-273. |
[6] | SCHUNEMANN P G, SETZLER S D, POLLAK T M, et al.Defect segregation in CdGeAs2.Journal of Crystal Growth, 2001, 225(2/3/4): 440-444. |
[7] | LABRIE D, GEORGE A E, SIMPSON A M, et al.Characterization of CdGeAs2 grown by the float zone technique under microgravity.Journal of Crystal Growth, 2000, 208(1-4): 379-388. |
[8] | DAVID N N.Nonlinear Optical Crystals: a Complete Survey. New York: Springer, 2005: 383. |
[9] | ISELER G W, KILDAL H, MENYUK N.Optical and electrical properties of CdGeAs2.Journal of Electronic Materials, 1978, 7(6): 737. |
[10] | HE Z Y, ZHAO B J, ZHU S F, et al.Polycrystal synthesis and single crystal growth of CdGeAs2.Journal of Inorganic Materials, 2010, 25(11): 1195-1198. |
[11] | LIU W J, ZHAO B J, ZHU S F, et al.X-ray study of thermal expansion behaviors and Grüneisen parameters of cadmium germanium arsenide crystal over the temperature range 25-450 ℃.Journal of Applied Physics, 2013, 114(5): 053513. |
[12] | PHILLIPS J C.Electronegativity and tetragonal distortions in AIIBIVC2V semiconductors.Journal of Physics and Chemistry of Solids, 1974. 35(9): 1205-1209. |
[13] | MARENKIN S F, NOVOTORTSEV V M, PALKINA K K, et al.Preparation and structure of CdGeAs2 crystals.Inorganic Materials, 2004, 40(2): 93. |
[14] | GAO F M, ZHANG S Y.Relationship of chemical bond and thermal expansion in crystals.Journal of Synthetic Crystals, 1992, 21(04): 325-328. |
[15] | ABRAHAMS S C, BERNSTEIN J L.Piezoelectric nonlinear optic CuGaSe2 and CdGeAs2 : crystal structure, chalcopyrite microhardness, and sublattice distortion.Journal of Chemical Physics, 1974, 61(3): 1140-1146. |
[16] | YU Y, ZHAO B J, ZHU S F, et al.Ab initio vibrational and dielectric properties of chalcopyrite CdGeAs2.Solid State Sciences, 2011, 13: 422-426. |
[17] | ABRAHAMS S C, BERNSTEIN J L.Piezoelectric nonlinear optic CuGaS2 and CuInS2 crystal structure: sublattice distortion in AIBIIIC2VI and AIIBIVC2V type chalcopyrites.Journal of Chemical Physics, 1973, 59(10): 5415-5422. |
[18] | KISTAIAH P, VENUDHAR Y C, MURTHY K S, et al.Temperature dependence of tetragonal distortion and thermal expansion of copper indium selenide.Journal of Physics D: Applied Physics, 1981, 14(7): 1311-1316. |
[19] | KISTAIAH P, MURTHY K S.Temperature behaviour of the tetragonal distortion and thermal expansion of Cu-III-VI2 chalcopyrite semiconductors.Journal of the Less Common Metals, 1985, 105(1): 37-54. |
[20] | SAMANTA L K, GHOSH D K, BHAR G C.Optical nonlinearity, band-structure parameters, and refractive indices of some mixed chalcopyrite crystals.Physical Review B, 1986, 33(6): 4145-4148. |
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