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Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri

Year 2017, Volume: 29 Issue: 2, 45 - 54, 01.10.2017

Abstract

Bu çalışmada, daha önce tarafımızca sentezlenen P(DEAMSt)L1 homopolimeri ligand olarak kullanılıp Zn(II) iyonu ile metal kompleksi hazırlandı. Homopolimerin Zn(II) metal iyonu ile yaptığı P(DEAMSt)L1-Zn kompleksi bilinen organik çözücülerde çözünmediğinden karakterizasyonda sadece FT-IR tekniği kullanıldı, element analiz ile kompleksteki C, H, N % değerleri belirlenip ampirik formülleri oluşturuldu. SEM görüntüsü alınarak morfolojik yapısı tayin edildi. Metal kompleksin TGA’sı alınarak termal davranışları incelendi. Elde edilen sonuçlar biribiriyle kıyaslandı. Polimer-metal kompleksin impedans analizör tekniğiyle dielektriksel davranışları incelendi. Dielektrik sabiti ’), dielektrik kayıp faktörü (’’), elektrik iletkenliği () gibi özellikleri frekans ve sıcaklığın bir fonksiyonu olarak incelenip, bulunan sonuçlar birbirleriyle kıyaslandı. İletkenlik ölçümlerinden faydalanılarak ln()´ya karşılık 1000/T grafikleri çizilip elde edilen doğrunun eğiminden elektrik iletimiyle alakalı aktivasyon enerjisi (Ea) hesaplandı.

References

  • 1. Takemoto, K., Ottenbrite, R.M., Kamachi, M., 1997. Functional Monomers And Polymers.
  • 2. Amanda, N.P., Spiro, D.A., 2010, Engineering Selectivity into Polymer-Supported Reagents for Transition Metal Ion Complex Formation, Ractive & Functional Polymer, 70, 545-554.
  • 3. Saçak, M., Polimer Kimyası, Ankara Üniversitesi, Gazi Kitabevi 2002.
  • 4. Chare, N., Benmaamar, Z., Arrar, L., Baghiani, A., Zolbum, R.M., et al., 2012, Preparation of a New Polystyrene Supported-Ethylenediamine Diacetic Acid Resin and its Sorption Behavior Toward Divalent Metal Ions, Solvent Extraction and Jon Exchange, 30, 101-112.
  • 5. Özbülbül, A., 2006. “Oligofenol Esaslı Yeni Tip Oligomer Schıff Bazlarının Sentezi ve Karakterizasyonu”, Yüksek Lisans Tezi, Çukurova Üniversitesi, Adana.
  • 6. Kislenko, V.N., Oliynyk, L.P., 2002, Complex formation of polyethyleneimine with copper(II), nickel(II), and cobalt(II) ions. J Polym Sci Polym Chem 40:914–922.
  • 7. Hojo, N., Shirai, H., Hayashi, S., 1974. Complex formation between poly(vinyl alcohol) and metallic ions in aqueous solution. J Polym Sci Polym Symp 47:299–307.
  • 8. Silversteina, M.S., Najarya, Y., Lumelskya, Y., Lampec, I., Graderb, G.S., Shterb, G.E., 2004. Complex formation and degradation in poly(acrylonitrile-co-vinyl acetate) containing metal nitrates. Polymer 45:937–947.
  • 9. Kaliyappan, T., Swaminathan C.S. and Kanan, P., 1996. Synthesis and chracterization of new metal chelating polymer and derived Ni(II) and Cu(II) polymer complexes. Polymer. Vol: 37. No: 13, 2865-2869.
  • 10. Aslışah,A., Necmittin ,Ç., Fatih B., 2017. Metal complexes of a homopolymer system containing diethenolamine side Group: Synthesis and dielectrical behaviors, Journal of Macromolecular Science, Part A Pure and Applied Chemistry (İNCELEMEDE)
  • 11. He, Y., Wang, L., Cai, C., 2010. Diethanol Amine-Fuctionalized Polymer-Supported Palladiım (0) Complex as Catalyst for Suziki Cross-Coupling Reaction in Water, Journal of Applied Polymer Science, Vol. 121, 286-291.
  • 12. Gao, B., Wei, X., Hang, Y., 2013. Synthesis And Luminescence Properties Of Polymeric Comlexes Of Cu(II), Zn(II) And Al(III) With 8-Hydroxyquinoline Side Group-Containing Polystyrene. Optical Materials 35, 536-542.
  • 13. Golikand, A.N., Didehban, K., 2010, Preparation and characterization of polymer/multiwall carbon nanotube/ nanoparticle nanocomposites and preparation of their metal complexes. Journal of Applied Polymer Science, Vol.118, 113-120.
  • 14. Serttekin, S., 2009, Etilendiamin İçeren Ni(II), Co(II), Cu(II) Komplekslerinin Sentezi ve Yapılarının Aydınlatılması, Yüksek Lisans Tezi, Çukurova Üniv. Fen Bilimleri Enstitüsü, Adana.
  • 15. Syrlybaeva, R., Movsum-Zade, N., Satiullina, I., Puzin, Y., Movsum-Zade, E. 2015. Polymer-metal complexes of polyacrylonitrile and its copolymer, J. Polym. Res., 22: 100, D01, 1.1007/5, 1965-015-0716-4.
  • 16. Haythem A. Saadeh, Eman A. Abu Shairah, Noureddine Charef, Mohammad S. Mubarak. 2012, Synthesis and adsorption properties, toward-based terpyridine polymer. Journal of Applied Science.Vol: 124, 2717-2724.
  • 17. Sun, C., Qu, R., Ji, C., Wang, C., Sun, Y., and et al. 2006, Preparation and adsorption properties of crosslinked polystyrene-supported low-generation diethanolamine-typed dendrimer for metal ions.Talanta 70, 14-19.
  • 18. Vinodh, R., Ilakiya, A., Elamathi, S., Songeetha, A., 2010, A novel anion exchange membrane from polystyrene (ethylene buthylene) polystyren: Synthesis and characterization. Materials Science and Engineering B.167, 43-50.
  • 19. El-Arnaouty, M.B., Abdel Ghaffar, A.M., Eid. M.,2013, Proporties of grafted polymer metal complexes as ion exchangers and its electrical conduçtivity. Polymer Engineering and Science, DOI 10.1002/Pen, 790.
  • 20. Singru, W.B. Gurnule, V.A. Khati, A.B. Zade, J.R., 2010, Dontulwar, Eco-friendly aplication of p-cresol-melamine-formaldehyde polymer resin as an ion-exchanger and its electrical and thermal study. Desalination 263, 200-210.
  • 21. Wang, Y., Ma, X., Zhang, Q., Tian, N., 2010, Synthesis and properties of gel polymer electrolyte membranes based on novel comb-like methyl methacrylate copolymers. Journal of Mebrane Science, 349, 279-286.
  • 22. Ahamad, T., Alshehri, S.M. 2013. Synthesis and Characterization of Polymer-Metal Complexes and Their Catalytic Activity in Ethylene Oligomerization, Advances in Polymer Technology, Vol. 32, No. 3, 001 10, 1002/adv. 21350.
  • 23. Pearly, C.S., Sridevi, N., Mohammed, K.K.Y., 2007, Characterization and catalytic activity of polymer supported ruthenium schiff base complexes towards catechol oxidation. Journal of Applied Polymer Science, Vol.105, 997-1002.
  • 24. Cazacu M, Marcu M, Vlad A, Rusu G.I, Avadanei M., 2004, Chalete polymers. VI: New copolymers of the some siloxane containning bis(2,4-dihydroxybenzaldehyd -imine)Me2+ with bis(pcarboxyphenyl) diphenylsilane. Journal of Organometal Chemical, 689(19), 3005-3011.
  • 25. Shahada, L., El-Toukhy, A., Abu-Raqabah, A.T., 1997. Synthesis and characterization of a New Chelating Polymer and its Metal Complexes, J. Of Molecular Catalysis A: Chemical, 115, 61-72.
  • 26. Coşkun, M., Seven, P., 2011. Synthesis characterization and investigation of dielectric properties of two-Armed grafft copolymers prepared with metylmethacrylate and styrene an to PVC using atom transfer radical polymerization. Reactive and Functional Polymers 71, 395-401.
  • 27. Stefanec, D. and Krajnc, P., 2005, 4-vinylbenzyl chloride based porous spherical polymer supports derived from water- in-oil-in-water emulsions. Reactive and Functional Polymers. Vol.65, no. 1-2, 37-45.
  • 28. İyibakanlar, G., Oktay, A., 2007, Bazı Polimerlerin Dielektrik Özelliklerinin Frekansla Değişimlerinin İncelenmesi, Havacılık ve Uzay Teknolojileri, Cilt 3, Sayı 1, 11-19.
  • 29. Belekere, N.N., Misra, S.C.K., Ram, M.K., Rout, D., Grapta, R., Malhatra, B.D., Chandra, S., 1992. Interfacial polymerizatin in semiconducting polypyrole thin films, J. Phys., Condens Matter, 4, 5747-5756.
  • 30. Shaaban M. H, Ali A. A, El-Nimr M.K., 2006, The AC conductivity of tellurite glases doped with HO2O3. Materials Chemistry Physics, .vol. 96. 433-438.
  • 31. Botros, S.H., Abd-El-Ghaffar, M.A., Eid, M.A.M., 2006, Synthesis of polymer-metal complexes and their effects on dielectric properties and ageing and UV resistance of SBR vulcanizates. Polymer-Plastics Technology and Engineering, 45 (), 1347-1355.
  • 32. Ayaz, N., Bezgin, F., Demirelli. K., 2012. Polymers based on methacrylate bearing comunarin group synthesis via free radical polymerization, monomer reactivity ratios, dielectric behavior and thermal stabilities, ISRN polymer Science. ID 352759. DOI:10.5402/2012/352759. pp.13.
  • 33. Bezgin, F., Ayaz, N., Demirelli. K., 2015. Synthesis , characterization and dielectric properties of polymers functionalized with coumarone and diethanolamine.Journal of Applyed Polym. Science .(2015). DOI: 10.1002/app.42164.
  • 34. Huang, Y., Saiz, E., Ezquerra, T.A., Guzman, J., Rainde, E., 2002. Broad-band dielectric spectroscopy of polymer chains containing stracturally complex side groups, Macromolecules, 35, 1785-1790.
  • 35. R. Seoudi, A.M.A. Nada. 2007. Molecular structure and dielectric properties studies of chitin and its treated by acid, base and hypochloride.Carbohydrate Polymers. 68, 728-733.
  • 36. Raja, Z., Sharma, A.K., Narasimha Rao, V.V.R., 2004. Inpadence Spectra and dielectric analysis of PMMA-co-P4VPNO polymer films, Materials Letters, 58, 3242-3247.
  • 37. Prajapati, G.K., Gupta, P.N. 2011. Comparative study of the electrical and dielectric properties of PVA-PEG-Al2O3-MI (M: Na, K, Ag) complex polymer electrolytes. Physica B, 406, 3108-3113.
  • 38. Rao, V.; Ashokan, P. V.; Shridhar, M. H. V. Rao, P. V. Ashokan, M. H. Shridhar. 2000. Studies of dielectric relaxation and a.c. conductivity in cellulose acetate hydrogen phthalate-poly(methyl methacrylate) blends. Materials Science and Engineering A, vol. 281, no. 1-2, pp. 213–220.
  • 39. Banerjee, S.; Kumar, A. J. 2010, Dielectric spectroscopy for probing the relaxation and charge transport in polypyrrole nanofibers, Phys. Chem. Solids, 71, 381.
  • 40. Rivas, B.L., Seguel, G.V. Ancatripai, C., 2000. Polymer-metal complexes: Synthesis, characterization, and properties of poly (maleic acid) metal complexes with Cu(II), Co(II), Nİ(II), and Zn (II). Polymer Bulletin, 44, (), 445-452.
  • 41. Kumar, M.P., Sankarappa, T., Vijaya B., Kumar, Nagaraja, N., 2009. Dielectric relaxation studies in transition metal ions doped tellurite glases. Solid State Sci., vol.11.214-218.
  • 42. Onwudiwe, D.C., Artin, T., Strydom, C.A., 2014, Fe(II) and Fe(III) complexes of N-ethyl-N-phenyl ditiocarbamate: Electrical conductivity studies and thermal properties, Electrochimica Acta, 127, 283-289.
  • 43. Onwudiwe, D.C., Arfin, T., Strydom, C.A., 2014. Fe(II) and Fe(III) complexes of N-ethyl-N-Phenyl dithiocarbamate: Electrical conductivity studies and thermal properties. Electrochimica Acta, 127, 283-289.
  • 44. Cannelli, G., Cantelli, R., Cordero, F., Trequattrini, F., Ferretti, M., 1996. Strong dependence on doping of a low activation-energy relaxation process in YBa2Cu3O61x: Possible polaron relaxation. Physical Review B.54, 15537-15542.
Year 2017, Volume: 29 Issue: 2, 45 - 54, 01.10.2017

Abstract

References

  • 1. Takemoto, K., Ottenbrite, R.M., Kamachi, M., 1997. Functional Monomers And Polymers.
  • 2. Amanda, N.P., Spiro, D.A., 2010, Engineering Selectivity into Polymer-Supported Reagents for Transition Metal Ion Complex Formation, Ractive & Functional Polymer, 70, 545-554.
  • 3. Saçak, M., Polimer Kimyası, Ankara Üniversitesi, Gazi Kitabevi 2002.
  • 4. Chare, N., Benmaamar, Z., Arrar, L., Baghiani, A., Zolbum, R.M., et al., 2012, Preparation of a New Polystyrene Supported-Ethylenediamine Diacetic Acid Resin and its Sorption Behavior Toward Divalent Metal Ions, Solvent Extraction and Jon Exchange, 30, 101-112.
  • 5. Özbülbül, A., 2006. “Oligofenol Esaslı Yeni Tip Oligomer Schıff Bazlarının Sentezi ve Karakterizasyonu”, Yüksek Lisans Tezi, Çukurova Üniversitesi, Adana.
  • 6. Kislenko, V.N., Oliynyk, L.P., 2002, Complex formation of polyethyleneimine with copper(II), nickel(II), and cobalt(II) ions. J Polym Sci Polym Chem 40:914–922.
  • 7. Hojo, N., Shirai, H., Hayashi, S., 1974. Complex formation between poly(vinyl alcohol) and metallic ions in aqueous solution. J Polym Sci Polym Symp 47:299–307.
  • 8. Silversteina, M.S., Najarya, Y., Lumelskya, Y., Lampec, I., Graderb, G.S., Shterb, G.E., 2004. Complex formation and degradation in poly(acrylonitrile-co-vinyl acetate) containing metal nitrates. Polymer 45:937–947.
  • 9. Kaliyappan, T., Swaminathan C.S. and Kanan, P., 1996. Synthesis and chracterization of new metal chelating polymer and derived Ni(II) and Cu(II) polymer complexes. Polymer. Vol: 37. No: 13, 2865-2869.
  • 10. Aslışah,A., Necmittin ,Ç., Fatih B., 2017. Metal complexes of a homopolymer system containing diethenolamine side Group: Synthesis and dielectrical behaviors, Journal of Macromolecular Science, Part A Pure and Applied Chemistry (İNCELEMEDE)
  • 11. He, Y., Wang, L., Cai, C., 2010. Diethanol Amine-Fuctionalized Polymer-Supported Palladiım (0) Complex as Catalyst for Suziki Cross-Coupling Reaction in Water, Journal of Applied Polymer Science, Vol. 121, 286-291.
  • 12. Gao, B., Wei, X., Hang, Y., 2013. Synthesis And Luminescence Properties Of Polymeric Comlexes Of Cu(II), Zn(II) And Al(III) With 8-Hydroxyquinoline Side Group-Containing Polystyrene. Optical Materials 35, 536-542.
  • 13. Golikand, A.N., Didehban, K., 2010, Preparation and characterization of polymer/multiwall carbon nanotube/ nanoparticle nanocomposites and preparation of their metal complexes. Journal of Applied Polymer Science, Vol.118, 113-120.
  • 14. Serttekin, S., 2009, Etilendiamin İçeren Ni(II), Co(II), Cu(II) Komplekslerinin Sentezi ve Yapılarının Aydınlatılması, Yüksek Lisans Tezi, Çukurova Üniv. Fen Bilimleri Enstitüsü, Adana.
  • 15. Syrlybaeva, R., Movsum-Zade, N., Satiullina, I., Puzin, Y., Movsum-Zade, E. 2015. Polymer-metal complexes of polyacrylonitrile and its copolymer, J. Polym. Res., 22: 100, D01, 1.1007/5, 1965-015-0716-4.
  • 16. Haythem A. Saadeh, Eman A. Abu Shairah, Noureddine Charef, Mohammad S. Mubarak. 2012, Synthesis and adsorption properties, toward-based terpyridine polymer. Journal of Applied Science.Vol: 124, 2717-2724.
  • 17. Sun, C., Qu, R., Ji, C., Wang, C., Sun, Y., and et al. 2006, Preparation and adsorption properties of crosslinked polystyrene-supported low-generation diethanolamine-typed dendrimer for metal ions.Talanta 70, 14-19.
  • 18. Vinodh, R., Ilakiya, A., Elamathi, S., Songeetha, A., 2010, A novel anion exchange membrane from polystyrene (ethylene buthylene) polystyren: Synthesis and characterization. Materials Science and Engineering B.167, 43-50.
  • 19. El-Arnaouty, M.B., Abdel Ghaffar, A.M., Eid. M.,2013, Proporties of grafted polymer metal complexes as ion exchangers and its electrical conduçtivity. Polymer Engineering and Science, DOI 10.1002/Pen, 790.
  • 20. Singru, W.B. Gurnule, V.A. Khati, A.B. Zade, J.R., 2010, Dontulwar, Eco-friendly aplication of p-cresol-melamine-formaldehyde polymer resin as an ion-exchanger and its electrical and thermal study. Desalination 263, 200-210.
  • 21. Wang, Y., Ma, X., Zhang, Q., Tian, N., 2010, Synthesis and properties of gel polymer electrolyte membranes based on novel comb-like methyl methacrylate copolymers. Journal of Mebrane Science, 349, 279-286.
  • 22. Ahamad, T., Alshehri, S.M. 2013. Synthesis and Characterization of Polymer-Metal Complexes and Their Catalytic Activity in Ethylene Oligomerization, Advances in Polymer Technology, Vol. 32, No. 3, 001 10, 1002/adv. 21350.
  • 23. Pearly, C.S., Sridevi, N., Mohammed, K.K.Y., 2007, Characterization and catalytic activity of polymer supported ruthenium schiff base complexes towards catechol oxidation. Journal of Applied Polymer Science, Vol.105, 997-1002.
  • 24. Cazacu M, Marcu M, Vlad A, Rusu G.I, Avadanei M., 2004, Chalete polymers. VI: New copolymers of the some siloxane containning bis(2,4-dihydroxybenzaldehyd -imine)Me2+ with bis(pcarboxyphenyl) diphenylsilane. Journal of Organometal Chemical, 689(19), 3005-3011.
  • 25. Shahada, L., El-Toukhy, A., Abu-Raqabah, A.T., 1997. Synthesis and characterization of a New Chelating Polymer and its Metal Complexes, J. Of Molecular Catalysis A: Chemical, 115, 61-72.
  • 26. Coşkun, M., Seven, P., 2011. Synthesis characterization and investigation of dielectric properties of two-Armed grafft copolymers prepared with metylmethacrylate and styrene an to PVC using atom transfer radical polymerization. Reactive and Functional Polymers 71, 395-401.
  • 27. Stefanec, D. and Krajnc, P., 2005, 4-vinylbenzyl chloride based porous spherical polymer supports derived from water- in-oil-in-water emulsions. Reactive and Functional Polymers. Vol.65, no. 1-2, 37-45.
  • 28. İyibakanlar, G., Oktay, A., 2007, Bazı Polimerlerin Dielektrik Özelliklerinin Frekansla Değişimlerinin İncelenmesi, Havacılık ve Uzay Teknolojileri, Cilt 3, Sayı 1, 11-19.
  • 29. Belekere, N.N., Misra, S.C.K., Ram, M.K., Rout, D., Grapta, R., Malhatra, B.D., Chandra, S., 1992. Interfacial polymerizatin in semiconducting polypyrole thin films, J. Phys., Condens Matter, 4, 5747-5756.
  • 30. Shaaban M. H, Ali A. A, El-Nimr M.K., 2006, The AC conductivity of tellurite glases doped with HO2O3. Materials Chemistry Physics, .vol. 96. 433-438.
  • 31. Botros, S.H., Abd-El-Ghaffar, M.A., Eid, M.A.M., 2006, Synthesis of polymer-metal complexes and their effects on dielectric properties and ageing and UV resistance of SBR vulcanizates. Polymer-Plastics Technology and Engineering, 45 (), 1347-1355.
  • 32. Ayaz, N., Bezgin, F., Demirelli. K., 2012. Polymers based on methacrylate bearing comunarin group synthesis via free radical polymerization, monomer reactivity ratios, dielectric behavior and thermal stabilities, ISRN polymer Science. ID 352759. DOI:10.5402/2012/352759. pp.13.
  • 33. Bezgin, F., Ayaz, N., Demirelli. K., 2015. Synthesis , characterization and dielectric properties of polymers functionalized with coumarone and diethanolamine.Journal of Applyed Polym. Science .(2015). DOI: 10.1002/app.42164.
  • 34. Huang, Y., Saiz, E., Ezquerra, T.A., Guzman, J., Rainde, E., 2002. Broad-band dielectric spectroscopy of polymer chains containing stracturally complex side groups, Macromolecules, 35, 1785-1790.
  • 35. R. Seoudi, A.M.A. Nada. 2007. Molecular structure and dielectric properties studies of chitin and its treated by acid, base and hypochloride.Carbohydrate Polymers. 68, 728-733.
  • 36. Raja, Z., Sharma, A.K., Narasimha Rao, V.V.R., 2004. Inpadence Spectra and dielectric analysis of PMMA-co-P4VPNO polymer films, Materials Letters, 58, 3242-3247.
  • 37. Prajapati, G.K., Gupta, P.N. 2011. Comparative study of the electrical and dielectric properties of PVA-PEG-Al2O3-MI (M: Na, K, Ag) complex polymer electrolytes. Physica B, 406, 3108-3113.
  • 38. Rao, V.; Ashokan, P. V.; Shridhar, M. H. V. Rao, P. V. Ashokan, M. H. Shridhar. 2000. Studies of dielectric relaxation and a.c. conductivity in cellulose acetate hydrogen phthalate-poly(methyl methacrylate) blends. Materials Science and Engineering A, vol. 281, no. 1-2, pp. 213–220.
  • 39. Banerjee, S.; Kumar, A. J. 2010, Dielectric spectroscopy for probing the relaxation and charge transport in polypyrrole nanofibers, Phys. Chem. Solids, 71, 381.
  • 40. Rivas, B.L., Seguel, G.V. Ancatripai, C., 2000. Polymer-metal complexes: Synthesis, characterization, and properties of poly (maleic acid) metal complexes with Cu(II), Co(II), Nİ(II), and Zn (II). Polymer Bulletin, 44, (), 445-452.
  • 41. Kumar, M.P., Sankarappa, T., Vijaya B., Kumar, Nagaraja, N., 2009. Dielectric relaxation studies in transition metal ions doped tellurite glases. Solid State Sci., vol.11.214-218.
  • 42. Onwudiwe, D.C., Artin, T., Strydom, C.A., 2014, Fe(II) and Fe(III) complexes of N-ethyl-N-phenyl ditiocarbamate: Electrical conductivity studies and thermal properties, Electrochimica Acta, 127, 283-289.
  • 43. Onwudiwe, D.C., Arfin, T., Strydom, C.A., 2014. Fe(II) and Fe(III) complexes of N-ethyl-N-Phenyl dithiocarbamate: Electrical conductivity studies and thermal properties. Electrochimica Acta, 127, 283-289.
  • 44. Cannelli, G., Cantelli, R., Cordero, F., Trequattrini, F., Ferretti, M., 1996. Strong dependence on doping of a low activation-energy relaxation process in YBa2Cu3O61x: Possible polaron relaxation. Physical Review B.54, 15537-15542.
There are 44 citations in total.

Details

Journal Section FBD
Authors

Aslışah Açıkses

Necmittin Çömez This is me

Publication Date October 1, 2017
Submission Date September 23, 2017
Published in Issue Year 2017 Volume: 29 Issue: 2

Cite

APA Açıkses, A., & Çömez, N. (2017). Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri. Fırat Üniversitesi Fen Bilimleri Dergisi, 29(2), 45-54.
AMA Açıkses A, Çömez N. Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri. Fırat Üniversitesi Fen Bilimleri Dergisi. October 2017;29(2):45-54.
Chicago Açıkses, Aslışah, and Necmittin Çömez. “Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu Ve Dielektrik Özellikleri”. Fırat Üniversitesi Fen Bilimleri Dergisi 29, no. 2 (October 2017): 45-54.
EndNote Açıkses A, Çömez N (October 1, 2017) Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri. Fırat Üniversitesi Fen Bilimleri Dergisi 29 2 45–54.
IEEE A. Açıkses and N. Çömez, “Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri”, Fırat Üniversitesi Fen Bilimleri Dergisi, vol. 29, no. 2, pp. 45–54, 2017.
ISNAD Açıkses, Aslışah - Çömez, Necmittin. “Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu Ve Dielektrik Özellikleri”. Fırat Üniversitesi Fen Bilimleri Dergisi 29/2 (October 2017), 45-54.
JAMA Açıkses A, Çömez N. Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri. Fırat Üniversitesi Fen Bilimleri Dergisi. 2017;29:45–54.
MLA Açıkses, Aslışah and Necmittin Çömez. “Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu Ve Dielektrik Özellikleri”. Fırat Üniversitesi Fen Bilimleri Dergisi, vol. 29, no. 2, 2017, pp. 45-54.
Vancouver Açıkses A, Çömez N. Dietanolamin Yan Grubu İçeren Bir Homopolimer Sisteminin Zn (II) Metal Kompleksinin Sentezi, Karakterizasyonu ve Dielektrik Özellikleri. Fırat Üniversitesi Fen Bilimleri Dergisi. 2017;29(2):45-54.