3D: Show Hide
FAIR Data table 1.a Computed free energies for substitution reactions of 11.
X + CCIPh ΔG Reactantb 1,1-substitution 1,2-substitution
ΔG ΔΔG ΔG ΔΔG
phenoxyl -911.479895
(-912.138973)d
-911.448953
(-912.107762)d
19.4 (19.6)d -911.447928
(-912.107781)d
19.6 ( 19.6)d
phenoxyle -911.457420 -911.427529 18.8 -911.430551 16.9
2,6-di-t-butylphenoxyl -1225.496559 -1225.457675 24.4 -1225.458865 23.7
Galvinoxyl -1883.445880 -1883.401400 27.9 -1883.404654 25.9
9,10-dihydroanthracene -1145.046811 -1144.996296 31.7 -1145.008883 23.8
PhICC -1210.058822 -1210.027145 19.9 -1210.034333 15.4
PhICCCC -1286.115137 -1286.088148 16.9 -1286.079175 22.6
NH3 -661.515175 -661.463026 32.7 -661.481807 20.9
F -704.934245
(-705.385855)c
-704.878130 35.2 -704.895595
(-705.346438)c
24.3 (25.1)c
aΔG linked to data repository entry for full details of calculation. Link to ΔΔG loads a 3D model of the system. bωB97XD/Def2-SVPD/CPCM=dichloromethane energy in Hartree for ΔG298 cΔΔG298 energies in kcal mol-1 for a standard state of 0.044M (1 atm). The experimental concentrations range from 0.02 - 0.033M. dwB97XD/Def2-TZVPPD/CPCM=dichloromethane energy, eGas phase.