-
3
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-
85042547097
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-
CRC Press, Standard bond dissociation energies (in kJ/mol) for the systems in Tables 5.1 and 5. 2 are listed as follows: CH3-H +439. 3 ±0. 4 kJ/mol; CH3CH2-H +420. 5±1. 3 kJ/mol; (CH3)2CH-H +410. 5±2. 9 kJ/mol; (CH3)3C-H +400. 4±2. 9 kJ/mol; CH2CHCH2-H +369±3 kJ/mol; C6H5CH2-H +375. 5±5 kJ/mol; CH2F-H +423. 8±4. 2 kJ/mol; CHF2-H +431. 8±4. 2 kJ/mol; CH3-CH3 +377. 4±0. 8 kJ/mol; CH3-CH2CH3 +370. 3±2. 1 kJ/mol; CH3CH2-CH2CH3 +363. 2±2. 5 kJ/mol; CH3-CH2F +388. 3±8. 4 kJ/ mol; CH3-CHF2 +405. 0±8. 4 kJ/mol; CH3-CF3 +429. 3±5. 0 kJ/mol
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Luo, Y. -R, Comprehensive Handbook of Chemical Bond Energies, CRC Press, 2007; Standard bond dissociation energies (in kJ/mol) for the systems in Tables 5.1 and 5.2 are listed as follows: CH3-H +439.3 ±0.4 kJ/mol; CH3CH2-H +420.5±1.3 kJ/mol; (CH3)2CH-H +410.5±2.9 kJ/mol; (CH3)3C-H +400.4±2.9 kJ/mol; CH2CHCH2-H +369±3 kJ/mol; C6H5CH2-H +375.5±5 kJ/mol; CH2F-H +423.8±4.2 kJ/mol; CHF2-H +431.8±4.2 kJ/mol; CH3-CH3 +377.4±0.8 kJ/mol; CH3-CH2CH3 +370.3±2.1 kJ/mol; CH3CH2-CH2CH3 +363.2±2.5 kJ/mol; CH3-CH2F +388.3±8.4 kJ/ mol; CH3-CHF2 +405.0±8.4 kJ/mol; CH3-CF3 +429.3±5.0 kJ/mol.
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