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Tautomer energy comparison

using model chemistry: B3PW91/6-311G**

17 10 12 10 46
formula sketch Energy (kJ mol-1) Name difference
A B calculated experiment A B
C3H4 sketch of allene sketch of propyne 8 -7 allene propyne 15
C4H6 sketch of 1,2-Butadiene sketch of 1,3-Butadiene -40 -51 1,2-Butadiene 1,3-Butadiene 11
C4H6 sketch of 1,2-Butadiene sketch of 1-Butyne 20 3 1,2-Butadiene 1-Butyne 17
C4H6 sketch of 1,2-Butadiene sketch of 2-Butyne -10 -17 1,2-Butadiene 2-Butyne 7
C4H6 sketch of Cyclobutene sketch of 1,3-Butadiene -44 -49 Cyclobutene 1,3-Butadiene 6
C4H6 sketch of 1-Methylcyclopropene sketch of 1,2-Butadiene -75 -82 1-Methylcyclopropene 1,2-Butadiene 7
C4H6 sketch of Methylenecyclopropane sketch of 1-Methylcyclopropene 47 42 Methylenecyclopropane 1-Methylcyclopropene 5
C3H6O sketch of Oxetane sketch of Propanal -111 -110 Oxetane Propanal -0
C4H8 sketch of cyclobutane sketch of 1-Butene -20 -33 cyclobutane 1-Butene 13
C3H4O2 sketch of 2-Propenoic acid sketch of β–Propiolactone 31 29 2-Propenoic acid β–Propiolactone 2
C4H6S sketch of Thiophene, 2,5-dihydro- sketch of Thiophene, 2,3-dihydro- 1 4 Thiophene, 2,5-dihydro- Thiophene, 2,3-dihydro- -4
C5H8 sketch of 1,3-Pentadiene, (E)- sketch of 1,4-Pentadiene 35 25 1,3-Pentadiene, (E)- 1,4-Pentadiene 10
C5H8 sketch of 1,3-Pentadiene, (E)- sketch of 1,2-Pentadiene 58 64 1,3-Pentadiene, (E)- 1,2-Pentadiene -7
C5H8 sketch of 1,2-Butadiene, 3-methyl- sketch of 1,3-Butadiene, 2-methyl- -39 -52 1,2-Butadiene, 3-methyl- 1,3-Butadiene, 2-methyl- 13
C5H10 sketch of 1-Butene, 2-methyl- sketch of 2-Butene, 2-methyl- -12 -5 1-Butene, 2-methyl- 2-Butene, 2-methyl- -6
C5H10 sketch of Cyclopropane, 1,1-dimethyl- sketch of 1-Butene, 2-methyl- -19 -29 Cyclopropane, 1,1-dimethyl- 1-Butene, 2-methyl- 10