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Abstract
An orthorhombic (2- Amino 5 – Nitro Pyridinum Phosphate) semi organic crystals was grown using slow evaporation method. As grown crystals of 2A5NPDP was characterized by microhardness, dielectric and photoconductivity studies. Hardness value was measured by Vickers hardness. The study of dielectric constant was carried out by using HIOKI 3532-50 LCR HITESTER. The photoconductivity was also measured by using KEITHLEY 485 picometer.
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How to Cite
Rajkumar, M. A., John Xavier, S. S., Anbarasu, S., & Devarajan, P. (2014). Microhardness, Dielectric and Photoconductivity Studies of 2- Amino 5- Nitro Pyridinium Dihydrogen Phosphate (2A5NPDP) NLO Single Crystal. International Journal of Emerging Trends in Science and Technology, 1(10). Retrieved from http://igmpublication.org/ijetst.in/index.php/ijetst/article/view/442
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6. W. Geis, R. Sinta, W. Mowers, S.J. Deneault, M.F. Marchant, k.E. Krohn, S.J. Spector, D.R.. Calawa, T.M. Lyszczarz, App. Phys. Lett. 84 (2004) 3729.
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8. A. Schneider, M. Neis, M. Stillhart, B. Ruiz, R.U.A. Khan, P. Gunter, J. Opt. Soc. Am. B: Opt. Phys. 23 (2006) 1822.
9. E. Ramachandran, S. Natarajan, Crystal growth of some Urinary Stone Constituents: III. In- Vitro Crystallization of L- cystine and its characterization.Cryst. Res. Technol. 39 (2004) 308- 312.
10. J.D.Bierlein and H. Vanherzeele: J. Opt. Soc. Am. B (6) 4, 622-633 (1989).
11. Rene Masse and Joseph Zyss, Molecular Engineering 1: 141-152, (1991).
12. N.J. Long, Angew, Chem. Int. Ed. England 34/21 (1995).
13. M.H. Jiang, Q. Fang, Adv. Mater. 11/13 (1999) 1147.
14. P.A. Angeli Mary, S. Dhanuskodi, SpectrochemicaActa A 57 (2001) 2345.
15. K. Vasantha, S. Dhanuskodi, Spectrochemica Acta A 58 (2002) 311.
16. S. Dhanuskodi, A. Pricilla Jeyakumari, S. Manivannan, J. Cryst. Growth, 282 (2005) 72- 78.
17. Quan Shi, Zhi- Cheng Tan, You- Ying Di, Bo Tong, Shao- Xu Wang, Yan- Sheng Li, ThermochemicaActa 463 (2007) 6-9.
18. B.W. Mott, Microindentation Hardness Testing, Butterworth, London.(1956) 206.
19. BattaCalleja, F.J., Rueda. D.R., Poster.R.S. and Mead W.T. (1980) New Aspects of the Microhardness of Ultra Oriented Polyethiline. J. Master Science, 15, 762- 765.
20. E.M. Onitsch. Mikroskopie 2 (1947) 131- 151.
21. R. Ramesh Babu, K. Sethuraman, N. Vijian, G. Bhagavananarayana, R. Gopalasamy, P. Ramasamy, Cryst. Res. Technol. 41 (9) (2006) 906.
22. Suresh Sagadevan and priyaMurugesan, J. Crystallization process and Technology, 4 (2014) 99-110.
23. Goma. S., padmaC.m., Mahadevan C.K., Mater.Lett.60 (2006) 3701.
24. N.V. Prasad, G. Prasad, T. Bhimasankaran, S.V. Suryanarayana, G.S. Kumar, Indian J. Pure Appl. Phys. 34 (1996)m 639.
25. Chao- Yu Chung, Yen- Hwei Chang, Guo- Juchem, Yin- Lai, J. Cryst. Growth 284 (2005) 100.
26. A. Senthil, P. Ramasamy, J. Cryst. Growth 312 (2012) 276-281.
27. A. Senthil, R. Ramesh Babu, P. Ramasamy, J. Cryst. Growth.311 (2009) 544- 547.
28. Smith C.p., Dielectric Behaviour and structure, Mcgraw- Hill; Newyork, 1965.
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31. Francis p. Xavier, Anto Regis Inigo, George j. Goldsmith, J. PorphyrinsPhthalocyannines 3 (1999) 679.
32. V.N. Joshi, Photoconductivity, Marcel Dekker, Newyork, 1990.