Halkalı Alkil Tiyofen-Schiff Bazlarının Protonlanma ve Bunların Ni(II) İyonu ile Kompleks Oluşum Sabitlerinin Belirlenmesi
Yıl 2011,
Cilt: 6 Sayı: 1, 55 - 61, 16.05.2011
Nurşen Sarı
,
Aliye Altundaş
Hatice Öğütcü
Öz
Özet: Halkalı alkil tiyofen-Schiff bazların protonlanma ve bunların Ni(II) iyonu ile olan komplekslerinin kararlılık sabitleri %50 etil alkol-su (v/v) ortamında, potansiyometrik titrasyon yöntemi ile tayin edildi. Titrasyonlar 25°C'de, azot atmosferinde ve 0,15 M KCl'lü ortamda yapıldı. Potansiyometrik titrasyon verilerinden yararlanarak PKAS programı ile Schiff bazlarının stokiyometrik protonlanma sabitleri hesaplandı. Schiff bazlarına ait protonlanma sabitlerinin, kompleksleşme ve antimikrobiyel etkilerine bağlı olup olmadığı araştırıldı.
Kaynakça
- Altundaş A., Sarı N., Çolak N., Öğütcü H., 2010. Synthesis and biological activity of new
cycloalkylthiophene-Schiff bases and their Cr(III) and Zn(II) complexes, Medicinal Chemistry
Research, 19 (6): 576-588.
- Temple D.L., Yevich, J.P., Covington R.R., Hanning C.A., Seidehamel R.J., Mackey H.K., Bartek
M.J., 1979. Synthesis of 3,4-dihydro-4-oxothieno[2,3-d]pyrimidine-2-carboxylates, a new series
of orally active antiallergy agents, Journal of Medicinal Chemistry, 22 (5): 505–510.
- Eger K., Grieb G., Spätling S., 1990. Synthesis of pyrrolo[2,3-d]pyrimidine ribosides and their
potential in chemotherapeutics, Journal of Heterocyclic Chemistry, 27: 2069-2075.
- Li J.J., 2009. Name Reactions. A Collection of Detailed Mechanisms and Synthetic Applications.
Wallingford, CT 06492, United States of America, pp 254.
- Puterová Z., Krutošíková A., Véghc D., 2010. Gewald reaction: synthesis, properties and applications
of substituted 2-aminothiophenes, Arkivoc, (i): 209-246.
- Sarı N., Arslan S., Loğoğlu E., Sakıyan I., 2003. Antibacterial Activities of Some New Aminoacid-
Schiff Bases, GaziUniversitesi, Fen Bilimleri Dergisi, 16 (2): 283-288.
- Siddiqi K.S, Kureshy R.I, Khan N.H, Tabassum S., Zaidi S., 1988. Characterization and toxicity of
lanthanide complexes with nitrogen- and sulphur-containing Schiff bases, Inorganic Chemica
Acta, 151 (2): 95-100.
- Vyas K.M., Jadeja R.N., Gupta V. K., Surati K.R., 2011. Synthesis, characterization and crystal
structure of some bidentate heterocyclic Schiff base ligands of 4-toluoyl pyrazolones and its
mononuclear Cu(II) complexes, Journal of Molecular Structure, 990 (1-3): 110-120.
- Ocak M., Gümrükçüoğlu N., Ocak Ü., Buschmann H.-J. Schollmeyer E., 2008. The Synthesis of New
Triazole Ligands and Determination of Complex Stability Constant with Transition Metal
Cations in Aqueous Media, Journal of Solution Chemical, 37 (11): 1489-1497.
- Jiang J.J., Chang T.C., Hsu W.L., Hwang J.M., Hsu L.Y., 2003. Synthesis and biological activity of
sulfur-containing aryl-aldehyde Schiff bases, Chemical Pharmaceutical Bulletin, 51 (11): 1307-
1310.
- Sarı N., Gurkan P., Arslan S., 2003. Synthesis, potentiometric and antimicrobial activity studies on
2-pyridinilidene-DL-amino acids and their complexes, Transition Metal Chemistry 28 (4): 468-
474.
- Brahimi-Horn M.C., Pouysségur J., 2007. Hypoxia in cancer cell metabolism and pH regulation,
Essays in Biochemistry, 43 (2): 165-78.
- Martell A.E., Motekaitis R.J., 1988.The Determination and Use of Stability Constants, VCH,
Publishers Inc., New York. 46 pp.
- Sarı N., Gurkan P., 2004. Some Novel Amino Acid-Schiff Bases and their Complexes Synthesis,
Characterization, Solid State Conductivity Behaviors and Potentiometric, Zeitschrift für
Naturforschung B-A Journal of Chemical Sciences, 59b: 692-698.
- Gran G., 1952. Determination of the equivalence point in potentiometric titrations Part II, Analyst,
77: 661-671.
- Akay M.A., Dürüst N., Dürüst Y., Kilic E., 1999. Protonation constants of some N-substituted
thiophene-2-carboxamidoximes, Analytica Chimica Acta, 392 (2-3): 343-346.
- Özkar S., Çetinkaya B., Gül A., Gök Y. 1999. Anorganik Kimya, 3. Baskıdan Çeviri, Bilim
yayıncılık , sayfa: 139-140.
Determination of the Protonation Constants of Cycloalkyl Thiophen-Schiff Bases and their Complex Stability Constant with Ni(II) Ion
Yıl 2011,
Cilt: 6 Sayı: 1, 55 - 61, 16.05.2011
Nurşen Sarı
,
Aliye Altundaş
Hatice Öğütcü
Öz
Abstract: The protonation constants of the cycloalkyl thiophen-Schiff
bases and their stability constants of the Ni(II) complexes were
potentiometrically determined in a ethanol–water 50% (w/w) solution at
25°C, under N2 atmosphere and 0.15 M KCl ionic strength. The
stoichiometric protonation constants have been measured by the
potentiometric titration and calculations were performed by the PKAS
computer software recently developed. Variations of the protonation
constant of Schiff bases have been discussed in view of structural
effects exerted on Ni(II)-complex and antimicrobiyal.
Kaynakça
- Altundaş A., Sarı N., Çolak N., Öğütcü H., 2010. Synthesis and biological activity of new
cycloalkylthiophene-Schiff bases and their Cr(III) and Zn(II) complexes, Medicinal Chemistry
Research, 19 (6): 576-588.
- Temple D.L., Yevich, J.P., Covington R.R., Hanning C.A., Seidehamel R.J., Mackey H.K., Bartek
M.J., 1979. Synthesis of 3,4-dihydro-4-oxothieno[2,3-d]pyrimidine-2-carboxylates, a new series
of orally active antiallergy agents, Journal of Medicinal Chemistry, 22 (5): 505–510.
- Eger K., Grieb G., Spätling S., 1990. Synthesis of pyrrolo[2,3-d]pyrimidine ribosides and their
potential in chemotherapeutics, Journal of Heterocyclic Chemistry, 27: 2069-2075.
- Li J.J., 2009. Name Reactions. A Collection of Detailed Mechanisms and Synthetic Applications.
Wallingford, CT 06492, United States of America, pp 254.
- Puterová Z., Krutošíková A., Véghc D., 2010. Gewald reaction: synthesis, properties and applications
of substituted 2-aminothiophenes, Arkivoc, (i): 209-246.
- Sarı N., Arslan S., Loğoğlu E., Sakıyan I., 2003. Antibacterial Activities of Some New Aminoacid-
Schiff Bases, GaziUniversitesi, Fen Bilimleri Dergisi, 16 (2): 283-288.
- Siddiqi K.S, Kureshy R.I, Khan N.H, Tabassum S., Zaidi S., 1988. Characterization and toxicity of
lanthanide complexes with nitrogen- and sulphur-containing Schiff bases, Inorganic Chemica
Acta, 151 (2): 95-100.
- Vyas K.M., Jadeja R.N., Gupta V. K., Surati K.R., 2011. Synthesis, characterization and crystal
structure of some bidentate heterocyclic Schiff base ligands of 4-toluoyl pyrazolones and its
mononuclear Cu(II) complexes, Journal of Molecular Structure, 990 (1-3): 110-120.
- Ocak M., Gümrükçüoğlu N., Ocak Ü., Buschmann H.-J. Schollmeyer E., 2008. The Synthesis of New
Triazole Ligands and Determination of Complex Stability Constant with Transition Metal
Cations in Aqueous Media, Journal of Solution Chemical, 37 (11): 1489-1497.
- Jiang J.J., Chang T.C., Hsu W.L., Hwang J.M., Hsu L.Y., 2003. Synthesis and biological activity of
sulfur-containing aryl-aldehyde Schiff bases, Chemical Pharmaceutical Bulletin, 51 (11): 1307-
1310.
- Sarı N., Gurkan P., Arslan S., 2003. Synthesis, potentiometric and antimicrobial activity studies on
2-pyridinilidene-DL-amino acids and their complexes, Transition Metal Chemistry 28 (4): 468-
474.
- Brahimi-Horn M.C., Pouysségur J., 2007. Hypoxia in cancer cell metabolism and pH regulation,
Essays in Biochemistry, 43 (2): 165-78.
- Martell A.E., Motekaitis R.J., 1988.The Determination and Use of Stability Constants, VCH,
Publishers Inc., New York. 46 pp.
- Sarı N., Gurkan P., 2004. Some Novel Amino Acid-Schiff Bases and their Complexes Synthesis,
Characterization, Solid State Conductivity Behaviors and Potentiometric, Zeitschrift für
Naturforschung B-A Journal of Chemical Sciences, 59b: 692-698.
- Gran G., 1952. Determination of the equivalence point in potentiometric titrations Part II, Analyst,
77: 661-671.
- Akay M.A., Dürüst N., Dürüst Y., Kilic E., 1999. Protonation constants of some N-substituted
thiophene-2-carboxamidoximes, Analytica Chimica Acta, 392 (2-3): 343-346.
- Özkar S., Çetinkaya B., Gül A., Gök Y. 1999. Anorganik Kimya, 3. Baskıdan Çeviri, Bilim
yayıncılık , sayfa: 139-140.