Details

Preparation and Characterization of 4:1 (EC-PVC) Ethyl Cellulose - Polyvinyl Chloride Polyblends Thin Films

Welekar N.R

Department of Physics, Vidya Bharati Mahavidyalaya, C.K. Naidu Road, Camp, Amravati.-444602

Wasnik T.S.

Department of Physics, Vidya Bharati Mahavidyalaya, C.K. Naidu Road, Camp, Amravati.-444602

Lamdhade G.T.

Department of Physics, Vidya Bharati Mahavidyalaya, C.K. Naidu Road, Camp, Amravati.-444602

87-96

Vol: 13, Issue: 1, 2023

Receiving Date: 2023-02-10 Acceptance Date:

2023-03-16

Publication Date:

2023-03-25

Download PDF

http://doi.org/10.37648/ijrst.v13i01.010

Abstract

The present study is focused on preparation and characterization of 4:1 (EC-PVC) Ethyl Cellulose - Polyvinyl Chloride polyblends thin films of pure and doping with different weight ratio of Salicylic Acid (SA) and the isothermal evaporation technique used for its preparation. In order to investigate properties of the prepared samples were characterized by Fourier Transform Infrared Spectroscopy (FTIR) techniques.

Keywords: 4:1 (EC-PVC); Ethyl Cellulose; Polyvinyl Chloride; FTIR

References

  1. Chao.S, Wrighton. M.S, (1987); Journal of American Chem. Soc., 109, 6627.
  2. Gray F.M, (1991); Solid polymer electrolytes, Fundamentals and Technological Applications, VCH, New York
  3. Stinson. S , Chem and Eng. News, 75, 17, (1997).
  4. Fuller. J , Breda A.C., Carlin R. T. Electrochem., Soc, 144, 4 ,(1997).
  5. Basic definitions of Terms relating to polymers, International Union of Pure and Appl.Chem. London Butter Worths Publishers, London , (1974).
  6. Gold. V, Loening. K.L, McNaught. A.D and Sehmi. P, (1987); Compendium of Chemical Terminology / IUPAC Recommendations, Black Well Scientific Publications, Oxford Inc.Palo Alto, Calif.
  7. Sarto .C, (2009); Application of Solution Protein Chemistry to Biotechnology; Roger L. Lundblad (Ed.) Protein Science Series CRC Press, Taylor & Francis Group, Boca Raton, FL USA.
  8. Q. Wang and B.K. Storn; Polymer Testing, 24, 290, (2005).
  9. B. Balakrishnan and A. Jayakrishnan, (2005); Chemical modification of poly(vinyl chloride) using poly(ethylene glycol) to improve blood compatibility, in Trends in Biomaterials and Artificial Organs, 18,2, 230-236.
  10. Kirk-Othmer Encyclopedia of Chemical Technology. 4th ed. Volumes 1: New York, NY. John Wiley and Sons, p. 933, (1991).
  11. Kumar, P. K. Khare and A. Pal, (2018); 11th International Journal of Advance Research in Science and Engineering, 7, 3, (2018).
  12. X. Su, Z. Tang, K.B. Tan, J. Chen, J. Huang and Q. Li, (2020); Preparation and Characterization and Ethyl Cellulose Film Modified with Capsaicin. Carbohydr. Polym., 241, 116259.
  13. J. Zhu, X.T. Dong, X.L. Wang and Y.Z. Wang, (2010); Preparation and Properties of a Novel Biodegradable Ethyl Cellulose Grafting Copolymer with Poly(p-Dioxanone) Side–Chains. Carbohydr. Polym., 80, 350-359.
  14. Hosseini, S. Ramezani, M. Tabibiazar, M. Ghorbani and H. Samadi Kafil, (2021); Fabrication of Cumin Seed Oil Loaded Gliadin-Ethyl Cellulose Nanofibers Reinforced with Adipic Acid for Food Packaging Application. Food Packag. Shelf Life, 30, 100754.
  15. P. Shi, Y. Zuo, Q. Zou, J. Shen, L. Zhang, Y. Li and Y.S. Morsi, (2009); Improved Properties of Incorporated Chitosan Film with Ethyl Cellulose Microspheres for Controlled Release. Int. J. Pharm., 375, 67–74.
  16. A.J. Desmarais and R.F. Wint, (1983); Chapter 19 - Hydroxyalkyl and ethyl of cellulose, Polysaccharides and their Derivatives, Industrial Gums (Third Edition), 505-535, https://doi.org/10.1016/B978-0-08-092654-4.50023-1
  17. E. Erdem, M. Saçak and M. Karakisla, (1996); Synthesis and Properties of Oxalic Acid-doped Polyaniline, Polymer International, 39, 2, 153–159. DOI:10.1002/(SICI)1097-0126(199602)39:2<153::AID-PI481>3.0.CO;2-E
  18. S. Jadhava, D. Jaspalb and V.V. Chabukswar, (2014); Synthesis and characterization of conducting poly N-ethyl aniline doped with organic acids, Journal of Chemical and Pharmaceutical Research, 6, 10, 44-49.
  19. Gandhimathi, R.T. Karunakaran, A. Elakkinakumaran, S. Prabahar and R. Sathyalakshmi, (2020); Growth and Characterization Studies of an Organic Nonlinear Optical Crystal - Oxalic Acid Dihydrate, International Journal of Scientific Research in Physics and Applied Sciences, 8, 3, 54-59. https://doi.org/10.26438/ijsrpas/v8i3. 54 5 9
  20. V. Sangawar and C.S. Adgaonkar, Indian Journal of Pure and Applied Physics, 33, 401-11, (1995).
  21. N.G. Belsare and V.S. Deogaokar, (1998); Electrical conductivity of iodine doped polyblend films of polystyrene (PS) and polymethyl methacrylate (PMMA); Indian Journal of Pure and Applied Physics, 36, 280-89.
  22. N.G. Belsare and V.S. Deogaokar, (1998); TSDC study of iodine doped polyblends of Polystyrene (PS) and Polymethyl-methacrylate (PMMA), Journal of Polymer Materials (Oxford and IBM Pub.Co.Pvt.Ltd.), 15, 157-70.
  23. R. Bahri and B.R. Sood, (1983); Effect of iodine doping on the photoconductivity of polystyrene thin films, Thin Solid, 100, 1, L5-L8 https://doi.org/10.1016/0040-6090(83)90232-8
  24. V. Suthar, A. Pratap and H. Raval, (2000); Studies on poly(hydroxyl alkanoates)/(ethylcellulose)blends; Bull. Mater. Sci., 23, 3, 215–219. https://doi.org/10.1007/bf02719913
  25. K.K. Khichar, S.B. Dangi, V. Dhayal, U. Kumar, S.Z. Hashmi, V. Sadhu, B. Lal Choudhary, S. Kumar and S. Kaya, (2020); Structural, optical, and surface morphological studies of ethyl cellulose/graphene oxide nanocomposites, Polymer composites, 41, 7, 2792-2802, https://doi.org/10.1002/pc.25576
  26. M. Pandey, G.M. Joshi, A. Mukherjee and P. Thomas, (2016); Electrical properties and thermal degradation of poly(vinyl chloride)/polyvinylidene fluoride/ZnO polymer nanocomposites, Polymer International. https://www.researchgate.net/publication/304022401
  27. Bushra A. Hasan, Ahmad A.Hasan and Duaa-A-Umran, International Journal of Application or Innovation in Engineering & Management,2,11,86, (2013).
  28. S. Rajendran, R. Kannan and O. Mahendran, (2001); Ionic conductivity studies in poly(methylmethacrylate)–polyethlene oxide hybrid polymer electrolytes with lithium salts, Journal of Power Sources, 96, 2, 406-410. https://doi.org/10.1016/s0378-7753(00)00573-5
  29. S. Rajendran and T. Uma, (2000); Conductivity studies on PVC/PMMA polymer blend electrolyte, Materials Letters, 44, 3-4, 242-247. https://doi.org/10.1016/s0167-577x(00)00036-7
  30. M.K. Trivedi, A. Branton, D. Trivedi, H. Shettigar and K. Bairwa, (2015); Fourier Transform Infrared and Ultraviolet-Visible Spectroscopic Characterization of Biofield Treated Salicylic Acid and Sparfloxacin, Natural Products Chemistry & Research, 03, 05, 186. https://doi.org/10.4172/2329-6836.1000186
  31. X.H. Guan, G.H. Chen and C. Shang, (2007); ATR-FTIR and XPS study on the structure of complexes formed upon the adsorption of simple organic acids on aluminum hydroxide, J Environ Sci (China), 19, 4, 438-443. https://doi.org/10.1016/s1001-0742(07)60073-4
Back

Disclaimer: All papers published in IJRST will be indexed on Google Search Engine as per their policy.

We are one of the best in the field of watches and we take care of the needs of our customers and produce replica watches of very good quality as per their demands.