1.3 to 3.5 m
5 Cyclohexyl 3 (3 fluorophenylsulfonyl) 2 methyl 1 benzofuran
9
5 Cyclohexyl 3 ethylsulfinyl 2 (3 fluorophenyl) 1 benzofuran
8
5 Benzoyl 1 cyclohexyl 3 (m nitrophenyl) 2 phenylpyrrolidine spiro 4,2′ (6′ methoxy 1′ tetralone)
11
5 Fluoro 2 methyl 3 (3 methylphenylsulfonyl) 1 benzofuran
8
3,3,4,4,5,5 Hexafluoro 1 [5 (3 fluorophenyl) 2 methyl 3 thienyl] 2 (2 methyl 5 phenyl 3 thienyl)cyclopent 1 ene
16
5 Cyclohexyl 2 methyl 3 (3 methylphenylsulfonyl) 1 benzofuran
9
5 Bromo 2 methyl 3 (3 methylphenylsulfinyl) 1 benzofuran
8
3 tert Butyl 1 (3 nitrophenyl) 1H pyrazol 5 amine
8
5 Cyclopentyl 2 methyl 3 (3 methylphenylsulfonyl) 1 benzofuran
8
5 Chloro 3 ethylsulfinyl 2 (3 fluorophenyl) 1 benzofuran
10
3 Ethylsulfinyl 2 (3 fluorophenyl) 5 phenyl 1 benzofuran
9
3 (Benzotriazol 1 yl) 1 m tolylpropan 1 one
7
5 Ethyl 3 (3 fluorophenylsulfonyl) 2 methyl 1 benzofuran
9
3 {[5 (4 Chlorophenyl) 3 methyl 1H pyrazol 1 yl]methyl} 4 m tolyl 1H 1,2,4 triazole 5(4H) thione
11
5 Bromo 2,4,6 trimethyl 3 (3 methylphenylsulfinyl) 1 benzofuran
8
5 Chloro 2,7 dimethyl 3 (3 methylphenylsulfonyl) 1 benzofuran
8
Analytical performance of 3 m and 3 m + 1 armchair graphene nanoribbons under uniaxial strain
8
5 Cyclohexyl 2 methyl 3 (3 methylphenylsulfinyl) 1 benzofuran
9
5 Bromo 2,7 dimethyl 3 (3 methylphenylsulfonyl) 1 benzofuran
8
3 Phenyl 1H 1,2,4 triazol 5 amine–5 phenyl 1H 1,2,4 triazol 3 amine (1/1)
8