Computational Chemistry Comparison and Benchmark DataBase Release 22 (May 2022) Standard Reference Database 101 National Institute of Standards and Technology | |
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Bond type | Species | Name | Angle | Comment |
---|---|---|---|---|
aCC=C | C3H4 | cyclopropene | 64.58 | by symmetry |
aCC=C | C4H6 | Cyclobutene | 94.20 | |
aCC=C | C4H5NO | Isoxazole, 5-methyl- | 102.70 | !assumed |
aCC=C | C4H5NO | 3-Methylisoxazole | 102.70 | !assumed |
aCC=C | C3H3NO | Isoxazole | 103.00 | |
aCC=C | C3H4N2 | 1H-Pyrazole | 104.50 | |
aCC=C | C4H5N | Pyrrole | 104.70 | |
aCC=C | C4H4O | Furan | 106.10 | |
aCC=C | C6H6 | Fulvene | 107.71 | |
aCC=C | C4H2O3 | Maleic Anhydride | 107.80 | |
aCC=C | C6H8 | Bicyclo[2.1.1]hex-2-ene | 108.40 | |
aCC=C | C6H6 | Fulvene | 108.98 | |
aCC=C | C4H6O | Furan, 2,5-dihydro- | 109.30 | |
aCC=C | C6H8 | Bicyclo[3.1.0]hex-2-ene | 112.00 | |
aCC=C | C4H4S | Thiophene | 112.40 | |
aCC=C | C5H6S | Thiophene, 3-methyl- | 112.45 | !assumed |
aCC=C | C4H4N2O2 | Uracil | 118.90 | |
aCC=C | CHOCHCHCH3 | 2-Butenal | 119.83 | !assumed, towards =O |
aCC=C | C6H8 | 1,3-Cyclohexadiene | 120.20 | towards other = |
aCC=C | C6H8 | 1,3-Cyclohexadiene | 120.20 | away from = |
aCC=C | CH2CHCHO | Acrolein | 120.30 | |
aCC=C | C5H6 | 1-Buten-3-yne, 2-methyl- | 120.30 | to C with # |
aCC=C | C5H8 | 1,3-Butadiene, 2-methyl- | 121.00 | end C to methyl C |
aCC=C | C5H8 | 1,3-Butadiene, 2-methyl- | 121.40 | middle C has methyl C |
aCC=C | CH2CHCHO | Acrolein | 121.40 | |
aCC=C | CH2CHCH2F | Allyl Fluoride | 121.62 | |
aCC=C | C6H8 | (Z)-hexa-1,3,5-triene | 121.70 | from end |
aCC=C | C5H8 | 1,2-Butadiene, 3-methyl- | 121.80 | by symmetry |
aCC=C | CH2C(CH3)CH3 | 1-Propene, 2-methyl- | 122.35 | by symmetry |
aCC=C | C5H10 | 1-Butene, 2-methyl- | 122.50 | to methyl |
aCC=C | C3H3N | acrylonitrile | 122.60 | |
aCC=C | C10H10 | bullvalene | 122.60 | |
aCC=C | C6H8 | 1,4-Cyclohexadiene | 123.00 | |
aCC=C | C2H3CCH | 1-Buten-3-yne | 123.10 | |
aCC=C | C4H5N | (E)-2-Butenenitrile | 123.20 | towards C with N |
aCC=C | C5H8O | 2H-Pyran, 3,4-dihydro- | 123.30 | !assumed |
aCC=C | CH3CHCHCH3 | 2-Butene, (E)- | 123.80 | |
aCC=C | C6H12 | 2,3-dimethyl-but-2-ene | 123.90 | |
aCC=C | CH2C(CH3)OCH3 | 1-Propene, 2-methoxy- | 123.90 | |
aCC=C | C3H6O | 2-Propen-1-ol | 123.90 | |
aCC=C | CH2CHCH2CH2Cl | 1-Butene, 4-chloro- | 123.90 | |
aCC=C | CH2CCHCH3 | 1,2-Butadiene | 124.00 | |
aCC=C | C5H6 | 1-Buten-3-yne, 2-methyl- | 124.30 | !assumed, to end C |
aCC=C | C4H5N | (E)-2-Butenenitrile | 124.30 | !assumed, to end C |
aCC=C | C6H8 | (Z)-hexa-1,3,5-triene | 124.40 | |
aCC=C | C6H12 | (E)-3-methylpent-2-ene | 124.50 | |
aCC=C | CH2CHCH2F | Allyl Fluoride | 124.57 | |
aCC=C | C5H10 | 1-Butene, 2-methyl- | 125.20 | to ethyl |
aCC=C | CH2ClCHCHCH3 | 2-Butene, 1-chloro- | 125.30 | average |
aCC=C | C5H10 | 2-Pentene, (E)- | 125.40 | |
aCC=C | CH3CHCHCH3 | 2-Butene, (Z)- | 125.40 | |
aCC=C | CH2CHCH2CH3 | 1-Butene | 125.40 | |
aCC=C | C5H8 | 1,4-Pentadiene | 125.50 | |
aCC=C | CHOCHCHCH3 | 2-Butenal | 125.64 | |
aCC=C | C5H8 | Ethenylcyclopropane | 126.20 | |
aCC=C | C8H8 | cyclooctatetraene | 126.55 | ae |
aCC=C | C5H8 | 1,3-Butadiene, 2-methyl- | 127.30 | middle C is CH |
aCC=C | C5H10 | 2-Pentene, (Z)- | 127.40 | from end |
aCC=C | C4H6 | Methylenecyclopropane | 148.05 | by symmetry |
aCC=C | C4H6 | 1-Methylcyclopropene | 152.80 | to methyl C |
Average | 119.07 | ±12.08 | ||
Min | 64.58 | |||
Max | 152.80 |