
This work is licensed under a Creative Commons Attribution 4.0 International License.
Density, Speed of Sound and Derived Properties of Binary Mixtures Propiophenone + Butoxyethanol at T = (303.15, 308.15, 313.15 and 318.15) K
Corresponding Author(s) : M. Durga Bhavani
Asian Journal of Chemistry,
Vol. 36 No. 4 (2024): Vol 36 Issue 4, 2024
Abstract
This article was retracted due to substantial reports of incorrect data and miscalculations.
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- M. Shafique, S. Hussain, S. Asif, V. Pradhan and M. Farooqui, Res. J. Chem. Sci., 3, 98 (2013).
- S. Spange, Liquids, 4, 191 (2024); https://doi.org/10.3390/liquids4010010
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- H.K. Jeswani, A. Chilvers and A. Azapagic, Proc. Royal Soc. A, 476, 20200351 (2020); https://doi.org/10.1098/rspa.2020.0351
- M.K. Pasha, L. Dai, D. Liu, M. Guo and W. Du, Biotechnol. Biofuels, 14, 129 (2021); https://doi.org/10.1186/s13068-021-01977-z
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- J.A. Gonzalez, I.G. Mozo, De la Fuentea, J.C. Cobos and N. Riesco, Thermochim. Acta, 476, 20 (2008); https://doi.org/10.1016/j.tca.2008.07.002
- J. George and V.N. Sastry, J. Chem. Eng. Data, 49, 1116 (2004); https://doi.org/10.1021/je034022n
- N.V. Sastry, M.K. Valand, J. George and S.R. Patel, J. Chem. Eng. Data, 47, 262 (2002); https://doi.org/10.1021/je010268l
- J.M. Bernal, P. Lozano, E. García-Verdugo, M.I. Burguete, G. SánchezGómez, G. López-López, M. Pucheault, M. Vaultier and S.V. Luis, Molecules, 17, 8696 (2012); https://doi.org/10.3390/molecules17078696
- G. Grisolia, D. Fino and U. Lucia, Energy Rep., 6, 1561 (2020); https://doi.org/10.1016/j.egyr.2020.06.014
- J.C. Serrano-Ruiz, Molecules, 25, 5217 (2020); https://doi.org/10.3390/molecules25215217
- N.V. Sastry and M. K. Valand, Int. J. Thermophys., 18, 1387 (1997); https://doi.org/10.1007/BF02575341
- N.V. Sastry and P.N. Dave, Int. J. Thermophys., 17, 1289 (1996); https://doi.org/10.1007/BF01438671
- K. Narendra, T. Srinivasa Krishn, B. Sudhamsa, R. Dey and M. Sarath Babu, J. Chem. Thermodyn., 103, 17 (2016). https://doi.org/10.1016/j.jct.2016.08.001
- D. Dragoescu, M. Bendova, Z. Wagner and D. Gheorghe, J. Mol. Liq., 223, 790 (2016); https://doi.org/10.1016/j.molliq.2016.08.076
- M. Gowrishankar, P. Venkateswarlu, K.S. Kumar and S. Sivarambabu, J. Mol. Liq., 173, 172 (2012); https://doi.org/10.1016/j.molliq.2012.06.010
- S.S. Dhondge, C.P. Pandhurnekar and D.V. Parwate, J. Chem. Eng. Data, 55, 3962 (2010); https://doi.org/10.1021/je901072c
- A. Awasthi and A. Awasthi, Thermochim. Acta, 537, 57 (2012); https://doi.org/10.1016/j.tca.2012.03.001
- A. Kumar, T. Singh, R.L. Gardas and J.A.P. Coutinho, J. Chem. Thermodyn., 40, 32 (2008); https://doi.org/10.1016/j.jct.2007.06.002
- F. Comelli, R. Francesconi, A. Bigi and K. Rubini, J. Chem. Eng. Data, 51, 665 ( 2006); https://doi.org/10.1021/je050444g
- A.K. Nain, P. Chandra, J.D. Pandey and S. Gopal, J. Chem. Eng. Data, 53, 2654 (2008); https://doi.org/10.1021/je800579j
- F.J. Carmona, J. Antonio-Gonzalez, I.G. de la Fuente and J.C. Cobos, Thermochim. Acta, 403, 223 (2003); https://doi.org/10.1016/S0040-6031(03)00039-X
- I. Mozo, I.G. de la Fuente, J. Antonio-Gonzalez and J.C. Cobos, J. Mol. Liq., 129, 155 (2006); https://doi.org/10.1016/j.molliq.2006.02.002
- G. Douheret, M.I. Davis, J.C.R. Reis and M. Blandamer, J. Chem. Phys. Chem., 2, 148 (2001); https://doi.org/10.1002/1439-7641(20010316)2:3<148::AIDCPHC148>3.0.CO;2-J
- G. Douheret, M.I. Davis , J.C.R. Reis , I.J. Fjellanger, M.B. Vaage and H. Hoiland, Phys. Chem. Chem. Phys., 4, 6034 (2002); https://doi.org/10.1039/B208598D
- M. Manfredini, A. Marchetti, S. Sighnolfi, L. Tassi, A. Ulrici and M. Vignali, J. Mol. Liq., 100, 163 (2002); https://doi.org/10.1016/S0167-7322(02)00015-6
- M. Cocchi, A. Marchetti, L. Pigani, L. Tassi, A. Ulrici, G.Vaccari and C. Zanardi, Phys. Chem. Liq., 39, 151 (2001); https://doi.org/10.1080/00319100108030336
- M.S. Reddy, S.M. Nayeem, K.S.T.S. Raju and B.H. Babu, J. Therm. Anal. Calorim., 24, 959 (2016); https://doi.org/10.1007/s10973-015-5205-9
- A. Pal and B. Kumar, J. Mol. Liq., 163, 128 (2011); https://doi.org/10.1016/j.molliq.2011.08.008
- M. Narasaiah, N. Kolla, P. Bharat, S.K. Tadikonda and D. Ramachandran, Phys. Chem. Res., 10, 379 (2022); https://doi.org/10.22036/PCR.2021.306270.1972
- M.J.P. Comunas, P. Reghem, A. Baylaucq, C. Boned and J. Fernandez, J. Chem. Eng. Data, 49, 1344 (2004); https://doi.org/10.1021/je049929f
- P. Goralski and M. Tkaczyk, J. Chem. Eng. Data, 60, 2240 (2015); https://doi.org/10.1021/acs.jced.5b00051
- H. Rodriguez and J. F. Brennecke, J. Chem. Eng. Data, 51, 2145 (2006); https://doi.org/10.1021/je0602824
References
M. Shafique, S. Hussain, S. Asif, V. Pradhan and M. Farooqui, Res. J. Chem. Sci., 3, 98 (2013).
S. Spange, Liquids, 4, 191 (2024); https://doi.org/10.3390/liquids4010010
P. Cysewski, M. Przybylek, A. Kowalska, and N. Tymorek, P. Cysewski, M. Przybylek, A. Kowalska and N. Tymorek, Int. J. Mol. Sci., 22, 7365 (2021); https://doi.org/10.3390/ijms22147365
M. Srilakshmi, T.S. Krishna, K. Narendra, R. Dey and A. Ratnakar, J. Mol. Liq., 211, 854 (2015); https://doi.org/10.1016/j.molliq.2015.07.055
M. Gowrisankar, P. Venkateswarlu, K. Siva Kumar and S. Sivarambabu, J. Mol. Liq., 173, 172 (2012); https://doi.org/10.1016/j.molliq.2012.06.010
V. Narisetty, R. Reshmy, S. Maitra, A. Tarafdar, M.P. Alphy, A.N. Kumar, A. Madhavan, R. Sirohi, M.K. Awasthi, R. Sindhu, S. Varjani and P. Binod, Bioenerg. Res., 16, 16 (2023); https://doi.org/10.1007/s12155-022-10428-y
H.K. Jeswani, A. Chilvers and A. Azapagic, Proc. Royal Soc. A, 476, 20200351 (2020); https://doi.org/10.1098/rspa.2020.0351
M.K. Pasha, L. Dai, D. Liu, M. Guo and W. Du, Biotechnol. Biofuels, 14, 129 (2021); https://doi.org/10.1186/s13068-021-01977-z
T.S. Jyostna, B. Sathyanarayana and N. Satyanarayana, J. Chem. Thermodyn., 38, 1438 (2006); https://doi.org/10.1016/j.jct.2006.01.009
L. Moravkova, Z. Wagner and J. Linek, J. Chem. Thermodyn., 37, 658 (2005); https://doi.org/10.1016/j.jct.2004.10.011
C. Aneta and M.K. Cezary, J. Chem. Thermodyn., 43, 420 (2011); https://doi.org/10.1016/j.jct.2010.10.016
J.A. Gonzalez, I.G. Mozo, De la Fuentea, J.C. Cobos and N. Riesco, Thermochim. Acta, 476, 20 (2008); https://doi.org/10.1016/j.tca.2008.07.002
J. George and V.N. Sastry, J. Chem. Eng. Data, 49, 1116 (2004); https://doi.org/10.1021/je034022n
N.V. Sastry, M.K. Valand, J. George and S.R. Patel, J. Chem. Eng. Data, 47, 262 (2002); https://doi.org/10.1021/je010268l
J.M. Bernal, P. Lozano, E. García-Verdugo, M.I. Burguete, G. SánchezGómez, G. López-López, M. Pucheault, M. Vaultier and S.V. Luis, Molecules, 17, 8696 (2012); https://doi.org/10.3390/molecules17078696
G. Grisolia, D. Fino and U. Lucia, Energy Rep., 6, 1561 (2020); https://doi.org/10.1016/j.egyr.2020.06.014
J.C. Serrano-Ruiz, Molecules, 25, 5217 (2020); https://doi.org/10.3390/molecules25215217
N.V. Sastry and M. K. Valand, Int. J. Thermophys., 18, 1387 (1997); https://doi.org/10.1007/BF02575341
N.V. Sastry and P.N. Dave, Int. J. Thermophys., 17, 1289 (1996); https://doi.org/10.1007/BF01438671
K. Narendra, T. Srinivasa Krishn, B. Sudhamsa, R. Dey and M. Sarath Babu, J. Chem. Thermodyn., 103, 17 (2016). https://doi.org/10.1016/j.jct.2016.08.001
D. Dragoescu, M. Bendova, Z. Wagner and D. Gheorghe, J. Mol. Liq., 223, 790 (2016); https://doi.org/10.1016/j.molliq.2016.08.076
M. Gowrishankar, P. Venkateswarlu, K.S. Kumar and S. Sivarambabu, J. Mol. Liq., 173, 172 (2012); https://doi.org/10.1016/j.molliq.2012.06.010
S.S. Dhondge, C.P. Pandhurnekar and D.V. Parwate, J. Chem. Eng. Data, 55, 3962 (2010); https://doi.org/10.1021/je901072c
A. Awasthi and A. Awasthi, Thermochim. Acta, 537, 57 (2012); https://doi.org/10.1016/j.tca.2012.03.001
A. Kumar, T. Singh, R.L. Gardas and J.A.P. Coutinho, J. Chem. Thermodyn., 40, 32 (2008); https://doi.org/10.1016/j.jct.2007.06.002
F. Comelli, R. Francesconi, A. Bigi and K. Rubini, J. Chem. Eng. Data, 51, 665 ( 2006); https://doi.org/10.1021/je050444g
A.K. Nain, P. Chandra, J.D. Pandey and S. Gopal, J. Chem. Eng. Data, 53, 2654 (2008); https://doi.org/10.1021/je800579j
F.J. Carmona, J. Antonio-Gonzalez, I.G. de la Fuente and J.C. Cobos, Thermochim. Acta, 403, 223 (2003); https://doi.org/10.1016/S0040-6031(03)00039-X
I. Mozo, I.G. de la Fuente, J. Antonio-Gonzalez and J.C. Cobos, J. Mol. Liq., 129, 155 (2006); https://doi.org/10.1016/j.molliq.2006.02.002
G. Douheret, M.I. Davis, J.C.R. Reis and M. Blandamer, J. Chem. Phys. Chem., 2, 148 (2001); https://doi.org/10.1002/1439-7641(20010316)2:3<148::AIDCPHC148>3.0.CO;2-J
G. Douheret, M.I. Davis , J.C.R. Reis , I.J. Fjellanger, M.B. Vaage and H. Hoiland, Phys. Chem. Chem. Phys., 4, 6034 (2002); https://doi.org/10.1039/B208598D
M. Manfredini, A. Marchetti, S. Sighnolfi, L. Tassi, A. Ulrici and M. Vignali, J. Mol. Liq., 100, 163 (2002); https://doi.org/10.1016/S0167-7322(02)00015-6
M. Cocchi, A. Marchetti, L. Pigani, L. Tassi, A. Ulrici, G.Vaccari and C. Zanardi, Phys. Chem. Liq., 39, 151 (2001); https://doi.org/10.1080/00319100108030336
M.S. Reddy, S.M. Nayeem, K.S.T.S. Raju and B.H. Babu, J. Therm. Anal. Calorim., 24, 959 (2016); https://doi.org/10.1007/s10973-015-5205-9
A. Pal and B. Kumar, J. Mol. Liq., 163, 128 (2011); https://doi.org/10.1016/j.molliq.2011.08.008
M. Narasaiah, N. Kolla, P. Bharat, S.K. Tadikonda and D. Ramachandran, Phys. Chem. Res., 10, 379 (2022); https://doi.org/10.22036/PCR.2021.306270.1972
M.J.P. Comunas, P. Reghem, A. Baylaucq, C. Boned and J. Fernandez, J. Chem. Eng. Data, 49, 1344 (2004); https://doi.org/10.1021/je049929f
P. Goralski and M. Tkaczyk, J. Chem. Eng. Data, 60, 2240 (2015); https://doi.org/10.1021/acs.jced.5b00051
H. Rodriguez and J. F. Brennecke, J. Chem. Eng. Data, 51, 2145 (2006); https://doi.org/10.1021/je0602824