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Quantum chemical calculations of bond dissociation energies for COOH scission and electronic structure in some acids 被引量:1

Quantum chemical calculations of bond dissociation energies for COOH scission and electronic structure in some acids
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摘要 Quantum chemical calculations are performed to investigate the equilibrium C-COOH bond distances and the bond dissociation energies(BDEs) for 15 acids.These compounds are studied by utilizing the hybrid density functional theory(DFT)(B3LYP,B3PW91,B3P86,PBE1PBE) and the complete basis set(CBS-Q) method in conjunction with the 6311G^** basis as DFT methods have been found to have low basis sets sensitivity for small and medium molecules in our previous work.Comparisons between the computational results and the experimental values reveal that CBS-Q method,which can produce reasonable BDEs for some systems in our previous work,seems unable to predict accurate BDEs here.However,the B3P86 calculated results accord very well with the experimental values,within an average absolute error of 2.3 kcal/mol.Thus,B3P86 method is suitable for computing the reliable BDEs of C-COOH bond for carboxylic acid compounds.In addition,the energy gaps between the highest occupied molecular orbital(HOMO) and the lowest unoccupied molecular orbital(LUMO) of studied compounds are estimated,based on which the relative thermal stabilities of the studied acids are also discussed. Quantum chemical calculations are performed to investigate the equilibrium C-COOH bond distances and the bond dissociation energies(BDEs) for 15 acids.These compounds are studied by utilizing the hybrid density functional theory(DFT)(B3LYP,B3PW91,B3P86,PBE1PBE) and the complete basis set(CBS-Q) method in conjunction with the 6311G^** basis as DFT methods have been found to have low basis sets sensitivity for small and medium molecules in our previous work.Comparisons between the computational results and the experimental values reveal that CBS-Q method,which can produce reasonable BDEs for some systems in our previous work,seems unable to predict accurate BDEs here.However,the B3P86 calculated results accord very well with the experimental values,within an average absolute error of 2.3 kcal/mol.Thus,B3P86 method is suitable for computing the reliable BDEs of C-COOH bond for carboxylic acid compounds.In addition,the energy gaps between the highest occupied molecular orbital(HOMO) and the lowest unoccupied molecular orbital(LUMO) of studied compounds are estimated,based on which the relative thermal stabilities of the studied acids are also discussed.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第2期198-203,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 11047176) the Research Foundation of Education Bureau of Hubei Province,China (Grant Nos. Q20111305,B20101303,T201204,B20111304,and Q20091215)
关键词 bond dissociation energy density functional theory CBS-Q method bond dissociation energy,density functional theory,CBS-Q method
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  • 1Miao S and Shanks B H 2011 1. Catal. 279 136.
  • 2Tsai Y, Lin H and Lee M 2011 Chern. Eng. 1. 1711367.
  • 3Shin C H, Kim J Y, Kim H S, Monhapatra D, Ahn J Wand Bae W 2009 1. Hazard. Mater. 162 1278.
  • 4Baker M and Gabryelski W 2007 Int. 1. Mass Spectrom. 262 128.
  • 5Ho C, Shieh C, Tseng C, Chen Y and Lin J 2009 1. Catal. 261150.
  • 6Barnes N, de Doz M G and Srlimo H N 1997 Fluid Phase Equilib. 134 201.
  • 7Lee P and Che C 20091. Hazard. Mater. 165 156.
  • 8Shan D, Li Q, Xue Hand Cosnier S 2008 Sens. Actuators. B 134 1016.
  • 9Velegraki T, Balayiannis G, Diamadopoulos E, Katsaounis A and Mantzavinos D 2010 Chern. Eng. 1. 160538.
  • 10Velegraki T and Mantzavinos D 2008 Chern. Eng. 1. 140 15.

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