Full-text resources of PSJD and other databases are now available in the new Library of Science.
Visit https://bibliotekanauki.pl

PL EN


Preferences help
enabled [disable] Abstract
Number of results
2009 | 116 | 6 | 1033-1038

Article title

FT-IR, Thermal and NLO Studies on Amino Acid (L-Arginine and L-Alanine) Doped KDP Crystals

Authors

Content

Title variants

Languages of publication

EN

Abstracts

EN
Single crystals of pure and amino acid (L-arginine and L-alanine) doped potassium dihydrogen phosphate (KDP) for second harmonic generation have been grown from low temperature solution growth method by employing slow evaporation of the solvent. FT-IR spectrum of pure and doped KDP crystals confirms qualitatively the doping of the L-arginine and L-alanine in the host crystals. UV-visible spectroscopy shows the improvement in the transparency. Crystal structure has been studied by powder X-ray diffraction. Modification in the lattice parameters has been observed. Improvement in the SHG efficiency was studied by the Kurtz and Perry method. Thermal analysis has been performed on the grown crystals.

Keywords

EN

Year

Volume

116

Issue

6

Pages

1033-1038

Physical description

Dates

published
2009-12
received
2009-07-24
(unknown)
2009-10-12

Contributors

author
  • Department of Physics, Sant Gadge Baba Amravati University, Amravati-444602 (MS), India
author
  • Vaidhyanath College Parli-V, Dist. Beed (MS), India
author
  • Department of Physics, Sant Gadge Baba Amravati University, Amravati-444602 (MS), India

References

  • 1. H.M. Muncheryan, Lasers and Opto-electronic Devices, Hemisphere Pub. Co, New York 1991
  • 2. Y.R. Shen, The Principles of the Nonlinear Optics, Wiley, New York 1984
  • 3. P. Meystrey, M. Sargent II, Elements of Quantum Optics, Springer-Verlag, Berlin 1991
  • 4. Jun-Ichi Sakai, Phase Conjugate Optics, McGraw Hill, Inc., New York, London 1992
  • 5. P. Ramasamy, P. Santhana Raghavan, Crystal Growth Processes and Methods, KRU Publications, Kumbakonam 1999
  • 6. P. Santhana Raghavan, P. Ramasamy, Recent Trends in Crystal Growth, Pinsa 68, New Delhi 2002, p. 235
  • 7. P.F. Bordui, J.J. Zola, G. Kostecky, G.M. Loiacono, J. Cryst. Growth 71, 269 (1985)
  • 8. S. Hirota, H. Miki, K. Fukui, K. Maed, J. Cryst. Growth 235, 541 (2002)
  • 9. L.M. Rouse, E.A.D. White, J. Cryst. Growth 34, 173 (1976)
  • 10. S. Veintemillas Verdaguer, R. Rodriguez Clemente, J. Cryst. Growth 79, 198 (1986)
  • 11. A.A. Zekic, M.M. Mitrovic, J. Cryst. Growth 258, 204 (2003)
  • 12. Xun Sun, Xinguang Xu, Zhangshou Gao, Youjun Fu, Shenglai Wang, Hong Zeng, Yiping Li, J. Cryst. Growth 217, 404 (2000)
  • 13. Chen Jianzhong, Lin Sukun, Yang Fengtu, Wang Jiahe, Lang Jianming, J. Cryst. Growth 179, 226 (1997)
  • 14. S. Seif, K. Bhat, A.K. Batra, M.D. Aggarwal, R.B. Lal, Mater. Lett. 58, 991 (2004)
  • 15. I. Owczarek, K. Sangwal, J. Cryst. Growth 102, 574 (1990)
  • 16. O. Shimomura, J. Cryst. Growth 144, 253 (1994)
  • 17. A. Yokotani, H. Koide, T. Sasaki, T. Yamanaka, C. Yamanaka, J. Cryst. Growth 67, 627 (1984)
  • 18. Lu Taijing, R.B. Yalle, C.K. Ong, I. Sunagaw, J. Cryst. Growth 151, 342 (1995)
  • 19. P. Kumaresan, B.S. Moorthy Babu, P.M. Anbarasan, Mater. Res. Bull. 43, 1716 (2008)
  • 20. P. Triboulet, M. Cournil, J. Cryst. Growth 118, 231 (1992)
  • 21. S.K. Sharma, Sunil Verma, B.B. Shrivastava, V.K. Wadhawan, J. Cryst. Growth 244, 342 (2002)
  • 22. B. Dam, W.J.P. Van Enckevort, J. Cryst. Growth 69, 306 (1984)
  • 23. K. Srinivasan, P. Ramasamy, A. Cantoni, G. Bocelli, Mater. Sci. Eng. B 52, 129 (1998)
  • 24. T.N. Thomas, T.A. Land, M. Johnson, W.H. Casey, J. Coll. Interface Sci. 280, 18 (2004)
  • 25. K. Srinivasan, S. Anbukumar, P. Ramasamy, J. Cryst. Growth 151, 226 (1995)
  • 26. N.P. Rajesh, V. Kannan, P. Santhana Raghavan, P. Ramasamy, C.W. Lan, Mater. Lett. 52, 326 (2002)
  • 27. K. Fujioka, S. Matsuo, T. Kanabe, H. Fujita, M. Nakatsuka, J. Cryst. Growth 181, 265 (1997)
  • 28. Guohui Li, Genbo Su, Xinxin Zhuang, Zhengdong Li, Youping He, J. Cryst. Growth 269, 443 (2004)
  • 29. Yang Shangfeng, Su Genbo, Tang Jing, Mao Bingwei, Wu Jianmin, Li Zhengdong, J. Cryst. Growth 203, 425 (1999)
  • 30. R.J. Nelmes, G.M. Meyer, J.E. Tibballs, J. Phys. C, Solid State Phys. 15, 59 (1982)
  • 31. N. Zaitseva, L. Carman, I. Smolsky, R. Torres, M. Yan, J. Cryst. Growth 204, 512 (1999)
  • 32. A. Boukhris, C. Lecomte, B. Wyncke, F. Brehat, A. Thalal, J. Phys., Condens. Matter 6, 2475 (1994)
  • 33. P. Triboulet, M. Cournil, Mater. Chem. Phys. 24, 221 (1990)
  • 34. J. Podder, J. Cryst. Growth 237-239, 70 (2002)
  • 35. M. Nakatsuka, K. Fujioka, T. Kanabe, H. Fujita, J. Cryst. Growth 171, 531 (1997)
  • 36. P. Kumaresan, B.S. Moorthy Babu, P.M. Anbarasan, Opt. Mater. 30, 1361 (2008)
  • 37. K.D. Parikh, D.J. Dave, B.B. Parekh, M.J. Joshi, Bull Mater. Sci. 30, 105 (2007)
  • 38. P. Kumaresan, B.S. Moorthy Babu, P.M. Anbarasan, Opt. Adv. Mater. Rapid Commun. 1, 65 (2007)
  • 39. S.K. Kurtz, T.T. Perry, J. Appl. Phys. 39, 3798 (1968)
  • 40. W. Kemp, Organic Spectroscopy, Palgrave Foundation, New York, 2005
  • 41. J.A. Dean, Lange's Handbook of Chemistry, 15th ed., McGraw-Hill, New York, 1998

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv116n610kz
JavaScript is turned off in your web browser. Turn it on to take full advantage of this site, then refresh the page.