Have a personal or library account? Click to login

Structural and optical properties of VO2+ doped methacrylic acid ethylacrylate (MAA:EA) copolymer films

Open Access
|May 2018

References

  1. [1] LEON A.G., DIRIX Y., STAEDLE Y., FELDMAN K., HHNER G., CASERI W.R., SMITH P., Appl. Opt., 39 (2001), 4847.
  2. [2] SRIVASTAVA S., HARIDAS M., BASUJ K., Mater. Sci., 31 (2008), 213.
  3. [3] TOKIZAKI T., NAKAMURA A., KANEKO S., UCHIDA K., OMI S., TANJI H., ASAHARA Y., Appl. Phys. Lett., 65 (1991), 941.
  4. [4] WANG C., TAM K.C., JENKINS R.D., TAN C.B., J. Phys. Chem. B, 107 (2003), 4667.
  5. [5] WANG C., TAM K.C., TAN C.B., Langmuir, 20 (2004), 7933.
  6. [6] YOSHIDA K., DUBIN P.L., Colloids Surf. A, 147 (1999), 161.
  7. [7] KOSMELLA S., KOTZ J., SHIRAHAMA K., LIU J., J. Phys. Chem. B, 102 (1998), 6459.
  8. [8] CAVASINO F.P., HOFFMANN H., SBRIZIOLO C., TURCO LIVER M.L., Colloids Surf. A, 183 (2001), 689.
  9. [9] BAJAJ P., MEENAKSHI G., CHAVAN R.B., J. Appl. Poly. Sci., 51 (1994), 423.
  10. [10] WARWICK M.E.A., BINIONS R., J. Mater. Chem. A, 2(2014), 3275.
  11. [11] WANG Z., CHEN J., HU X., Thin Solid Films, 375 (2000), 238.
  12. [12] OZER N., Thin Solid Films, 305 (1997), 80.
  13. [13] LIVAGE J., J. Coord. Chem. Rev., 190 - 192 (1999), 391.
  14. [14] TAKAHASHI K., WANG Y., CAO G., Appl. Phys. Lett., 86 (2005), 053102 (1- 3).
  15. [15] BRYDSON J.A., Plastic materials, Oxford, North London, 1999.
  16. [16] ZIDAN H.M., J. Polym. Sci. Pol. Phys., 41 (2003), 112.
  17. [17] CHAUDHARI H.K., KEKLER D.S., J. Appl. Polym. Sci., 62 (1) (1996), 15.
  18. [18] BARBERO B.L., CADUS L.E., Appl. Catal. A-Gen., 237 (2003), 263.
  19. [19] HODGE R.M., EDWARD G.H., SIMON G.P., Polymer, 37 (1996), 1371.
  20. [20] WIECZOREK W., STEVENS J.R., J. Phys. Chem. B., 101 (1997), 1529.
  21. [21] SELIM M.S., SEOUDI R., SHABAKA A.A., Mater. Lett., 59 (2005), 2650.
  22. [22] MADHAVA KUMAR Y., BHAGYASREE K., GOPAL N.O., RAMU C.H., Adv. Polym. Tech., 6 (2) (2016), 26.
  23. [23] UMA DEVI C., SHARMA A.K., N RAO V.V.R., Mater. Lett., 56 (2002), 167.
  24. [24] DAVIS P.W., SHALLIDAY T.S., Phys. Rev., 118 (1960), 1020.
  25. [25] THUTUPALLI G.M., TOMILIN S.G., J. Phys. D. Appl. Phys., 9 (1976), 1639.
  26. [26] REDDEPPA N., SHARMA A.K., N RAO V.V.R., WEN C., Microelectron. Eng., 112 (2013), 57.
  27. [27] LUAN Z., XU J, HE H., KLINOWSKI J., KEVAN L., J. Phys. Chem., 100 (1996), 19595.
  28. [28] ABRAGAM A., BLEANEY B., Electron Paramagnetic Resonance of Transition Metal Ions, Oxford, Clarendon 1970.
  29. [29] OMKARAM I., SREEKANTH CHAKRADHAR R.P., LAKSHMANA RAO J., Physica B, 388(2007), 318.
  30. [30] ZHANG S., LEE J Y., HONG L., J. Power Sources, 126 (2004), 125.
  31. [31] CHU P.P., REDDY M.J., J. Power Sources, 115 (2003), 288.
  32. [32] EL-KHODARY A., Physica B, 405 (2010), 3401.
DOI: https://doi.org/10.1515/msp-2018-0014 | Journal eISSN: 2083-134X | Journal ISSN: 2083-1331
Language: English
Page range: 34 - 41
Submitted on: Feb 6, 2017
Accepted on: Jan 29, 2018
Published on: May 18, 2018
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Y. Madhava Kumar, K. Bhyagyasree, N.O. Gopal, Ch. Ramu, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.