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First and Second Dissociation Constants of Some Dicarboxylic Acids and Related Thermodynamic Functions in Water-1,4-Dioxane Medium
Corresponding Author(s) : A.A. Mahmoud
Asian Journal of Chemistry,
Vol. 28 No. 4 (2016): Vol 28 Issue 4
Abstract
First and second dissociation constants (K1 and K2) of succinic acid, tartaric acid, malonic acid, maleic acid, malic acid and phthalic acid in 20 wt % 1,4-dioxane have been determined at different temperatures (30-60 °C) by using a precise electromotive force method. The thermodynamic functions of dissociation of the acids viz., DG°, DH° and DS° for the first and the second dissociation reactions of these acids have been computed, analyzed and discussed in terms of solute-solvent interactions. An extra thermodynamic analysis has been done in the light of the isoequilibrium temperature values for both reactions indicating that these reactions are entropy controlled reactions.
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- L.A. Al-Alwan, L.A. Al-Juhaiman and A.A. Zaghloul, J. Saudi Chem. Soc., 12, 555 (2008).
- L.A. Al-Juhaiman, L.A. Al-Alwan and A.A. Zaghloul, Z. Phys. Chem., 220, 1181 (2006); doi:10.1524/zpch.2006.220.9.1181.
- G.A. El-Naggar, M. El-Batouti and A.A. Zaghloul, Bull. Electrochem., 17, 65 (2001).
- G.A. El-Naggar, S.M. Selim, A.A. Zaghloul and M.F. Amira, Z. Phys. Chem., 216, 1239 (2002); doi:10.1524/zpch.2002.216.10.1239.
- G.A. El-Naggar, A.A. Zaghloul and M. El-Batouti, Egypt. J. Chem., 45, 33 (2002).
- A.A. Zaghloul, G.A. El-Naggar and M.F. Amira, Gazz. Chim. Ital., 126, 735 (1996).
- A.A. Zaghloul, G.A. El-Naggar, S.A. El-Shazly and M.F. Amira, Talanta, 45, 189 (1997); doi:10.1016/S0039-9140(97)00119-7.
- M. Mohamed, A.A. Zaghloul, A.M. Saad, A.M. El-Bahnasawy and M.F. Amira, Afindad, 21, 2219 (1997).
- R.K. Kvaratskhelia and E.R. Kvaratskhelia, Russ. J. Electrochem., 46, 952 (2010); doi:10.1134/S1023193510080148.
- O. Kilic and E. Birol, J. Serb. Chem. Soc., 71, 43 (2006); doi:10.2298/JSC0601043K.
- G.A. Ebrahim, M.Sc. Thesis, Electrochemical Studies on the Formation of Ion-Paires of Some Metal Complexes in Mixed Solvents, Alexandria University, Egypt (2010).
- A.R.M. Miller and M.R. Fleming, Vitae, 16, 327 (2009).
- O. Iulian and O. Ciocirlan, Rev. Roum. Chim., 55, 45 (2010).
- H. Demirelli and F.Köseoglu, J. Solution Chem., 33, 1501 (2004); doi:10.1007/s10953-004-1404-x.
- W.L.F. Armarego and D.D. Perrin, Purification of Laboratory Chemicals, Elsevier, edn 4 (1997).
- C.B. Monk and M.F. Amira, J. Chem. Soc., Faraday Trans. I, 74, 1170 (1978); doi:10.1039/f19787401170.
- C.B. Monk and M.F. Amira, J. Chem. Soc., Faraday Trans. I, 76, 1773 (1980); doi:10.1039/f19807601773.
- H.A. Azab and K.M. Aboul Nour, J. Chem. Eng. Data, 44, 678 (1999); doi:10.1021/je980313y.
- B.M. Lowe and D.G. Smith, J. Chem. Soc., Faraday Trans. I, 69, 1934 (1973); doi:10.1039/f19736901934.
- F. Franks and D.J.G. Ives, Q. Rev. Chem. Soc., 20, 1 (1966); doi:10.1039/qr9662000001.
- H.P. Bennetto, D. Feakins and D.J. Turner, J. Chem. Soc. A, 1211 (1966); doi:10.1039/j19660001211.
- D. Feakins, K.G. Lawrence and R.P.T. Tomkins, J. Chem. Soc. A, 753 (1967); doi:10.1039/j19670000753.
- B.K. Dolui, S.K. Bhattacharya and K.K. Kundu, J. Solution Chem., 37, 987 (2008); doi:10.1007/s10953-008-9281-3.
- A. Hassan, H.A. Azab, S.A.E. Gyar and Z.A. Khafagy, Can. J. Chem., 70, 1684 (1992); doi:10.1139/v92-211.
- N. Bjerrum, Z. Phys. Chem., 106, 219 (1923).
- R. Gane and C.K. Ingold, J. Chem. Soc. A, 1594 (1928); doi:10.1039/jr9280001594.
- R. Gane and C.K. Ingold, J. Chem. Soc. A, 2267 (1928); doi:10.1039/jr9280002267.
- R. Gane and C.K. Ingold, J. Chem. Soc. A, 2153 (1931); doi:10.1039/jr9310002153.
- E.J. King, J. Am. Chem. Soc., 73, 155 (1951); doi:10.1021/ja01145a056.
- D.H. Everett and B.R.W. Pinsent, Proc. R. Soc. Lond. A Math. Phys. Sci., 215, 416 (1952); doi:10.1098/rspa.1952.0221.
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- K.J. Laidler, Chemical Kinetics. New York, McGraw-Hill (1965).
- D. De Marco, A. Giannetto and W. Linert, Thermochim. Acta, 286, 387 (1996); doi:10.1016/0040-6031(96)02969-3.
References
L.A. Al-Alwan, L.A. Al-Juhaiman and A.A. Zaghloul, J. Saudi Chem. Soc., 12, 555 (2008).
L.A. Al-Juhaiman, L.A. Al-Alwan and A.A. Zaghloul, Z. Phys. Chem., 220, 1181 (2006); doi:10.1524/zpch.2006.220.9.1181.
G.A. El-Naggar, M. El-Batouti and A.A. Zaghloul, Bull. Electrochem., 17, 65 (2001).
G.A. El-Naggar, S.M. Selim, A.A. Zaghloul and M.F. Amira, Z. Phys. Chem., 216, 1239 (2002); doi:10.1524/zpch.2002.216.10.1239.
G.A. El-Naggar, A.A. Zaghloul and M. El-Batouti, Egypt. J. Chem., 45, 33 (2002).
A.A. Zaghloul, G.A. El-Naggar and M.F. Amira, Gazz. Chim. Ital., 126, 735 (1996).
A.A. Zaghloul, G.A. El-Naggar, S.A. El-Shazly and M.F. Amira, Talanta, 45, 189 (1997); doi:10.1016/S0039-9140(97)00119-7.
M. Mohamed, A.A. Zaghloul, A.M. Saad, A.M. El-Bahnasawy and M.F. Amira, Afindad, 21, 2219 (1997).
R.K. Kvaratskhelia and E.R. Kvaratskhelia, Russ. J. Electrochem., 46, 952 (2010); doi:10.1134/S1023193510080148.
O. Kilic and E. Birol, J. Serb. Chem. Soc., 71, 43 (2006); doi:10.2298/JSC0601043K.
G.A. Ebrahim, M.Sc. Thesis, Electrochemical Studies on the Formation of Ion-Paires of Some Metal Complexes in Mixed Solvents, Alexandria University, Egypt (2010).
A.R.M. Miller and M.R. Fleming, Vitae, 16, 327 (2009).
O. Iulian and O. Ciocirlan, Rev. Roum. Chim., 55, 45 (2010).
H. Demirelli and F.Köseoglu, J. Solution Chem., 33, 1501 (2004); doi:10.1007/s10953-004-1404-x.
W.L.F. Armarego and D.D. Perrin, Purification of Laboratory Chemicals, Elsevier, edn 4 (1997).
C.B. Monk and M.F. Amira, J. Chem. Soc., Faraday Trans. I, 74, 1170 (1978); doi:10.1039/f19787401170.
C.B. Monk and M.F. Amira, J. Chem. Soc., Faraday Trans. I, 76, 1773 (1980); doi:10.1039/f19807601773.
H.A. Azab and K.M. Aboul Nour, J. Chem. Eng. Data, 44, 678 (1999); doi:10.1021/je980313y.
B.M. Lowe and D.G. Smith, J. Chem. Soc., Faraday Trans. I, 69, 1934 (1973); doi:10.1039/f19736901934.
F. Franks and D.J.G. Ives, Q. Rev. Chem. Soc., 20, 1 (1966); doi:10.1039/qr9662000001.
H.P. Bennetto, D. Feakins and D.J. Turner, J. Chem. Soc. A, 1211 (1966); doi:10.1039/j19660001211.
D. Feakins, K.G. Lawrence and R.P.T. Tomkins, J. Chem. Soc. A, 753 (1967); doi:10.1039/j19670000753.
B.K. Dolui, S.K. Bhattacharya and K.K. Kundu, J. Solution Chem., 37, 987 (2008); doi:10.1007/s10953-008-9281-3.
A. Hassan, H.A. Azab, S.A.E. Gyar and Z.A. Khafagy, Can. J. Chem., 70, 1684 (1992); doi:10.1139/v92-211.
N. Bjerrum, Z. Phys. Chem., 106, 219 (1923).
R. Gane and C.K. Ingold, J. Chem. Soc. A, 1594 (1928); doi:10.1039/jr9280001594.
R. Gane and C.K. Ingold, J. Chem. Soc. A, 2267 (1928); doi:10.1039/jr9280002267.
R. Gane and C.K. Ingold, J. Chem. Soc. A, 2153 (1931); doi:10.1039/jr9310002153.
E.J. King, J. Am. Chem. Soc., 73, 155 (1951); doi:10.1021/ja01145a056.
D.H. Everett and B.R.W. Pinsent, Proc. R. Soc. Lond. A Math. Phys. Sci., 215, 416 (1952); doi:10.1098/rspa.1952.0221.
E.J. King and G.W. King, J. Am. Chem. Soc., 78, 1089 (1956); doi:10.1021/ja01587a005.
K.J. Laidler, Chemical Kinetics. New York, McGraw-Hill (1965).
D. De Marco, A. Giannetto and W. Linert, Thermochim. Acta, 286, 387 (1996); doi:10.1016/0040-6031(96)02969-3.