F-Term-List

4C065 OTHER NITROGEN-CONDENSED HETEROCYCLIC COMPOUNDS II
C07D471/00 -471/22
C07D471/00-471/22 AA AA00
FORM OF CONDENSATION
AA01 AA02 AA03 AA04 AA05 AA07 AA09
. Orthocondensation . . Condensation position of first ring with another ring . . . 3-position (side a) (figure) . . . 4-position (side b) (figure) . . . 5-position (side c) (figure) . Pericondensation . Bridging
AA11 AA12 AA13 AA14 AA15 AA16 AA17 AA18 AA19 AA20
. Spirocondensation . . Spiro bond position of first ring . . . 2-position (figure) . . . 3-position (figure) . . . 4-position (figure) . . . 5-position (figure) . . Non-spiro-bonded first ring . Condensation of carbon rings . . Heterocyclic condensation by means of a carbon ring . Others
BB BB00
SECOND HETEROCYCLIC RING
BB01 BB03 BB04 BB05 BB06 BB08 BB09 BB10
. Four-membered ring . Five-membered ring . . Five-membered ring that contains one nitrogen . . Five-membered ring that contains two nitrogen . . . Imidazole skeleton (figure) . Six-membered ring . . Six-membered ring that contains one nitrogen . . Six-membered ring that contains two nitrogen
BB11 BB12 BB14 BB15 BB20
. . . Nitrogen in the 1- and 3-position (figure) . . . Nitrogen in the 1- and 4-position (figure) . Seven-membered ring . . Seven-membered ring that contains one nitrogen . Others
CC CC00
THIRD RING
CC01 CC02 CC03 CC04 CC05 CC06 CC07 CC08 CC09 CC10
. None . Five-membered heterocyclic ring . . Five-membered heterocyclic ring that contains one nitrogen . Six-membered heterocyclic ring . . Six-membered heterocyclic ring that contains one nitrogen . . Six-membered heterocyclic ring that contains two nitrogen . Seven-membered heterocyclic ring . . Seven-membered heterocyclic ring that contains two nitrogen . Carbon ring . Others
DD DD00
NUMBER OF NITROGEN ATOMS IN CONDENSED RING SYSTEMS
DD01 DD02 DD03 DD04 DD05 DD10
. One . Two . Three . Four . More than five . Others
EE EE00
NUMBER OF HETEROCYCLIC RINGS IN CONDENSED RING SYSTEMS
EE02 EE03 EE04 EE05 EE10
. Two . Three . Four . More than five . Others
HH HH00
SUBSTITUENTS THAT ARE BONDED TO THE FIRST RING BY CARBON
HH01 HH02 HH03 HH04 HH05 HH06 HH07 HH08 HH09 HH10
. None . Substituents bonded to the ring carbon . . Each substituent group contains X . . . X is oxygen . . . X is nitrogen . . . . Nitrogen bonds that are only of the type N-C or N-H . . . X is sulfur . . . Carboxylic group or functional derivative bonded to the ring carbon (figure) . Substituents bonded to the ring nitrogen . Others
JJ JJ00
SUBSTITUENTS THAT ARE BONDED TO THE FIRST RING BY X
JJ01 JJ02 JJ03 JJ04 JJ05 JJ06 JJ07 JJ08 JJ09 JJ10
. None (figure) . Hetero atom is halogen (figure) . X is O (figure) . . The first ring carbon is carbonyl carbon (figure) . . Hydroxyl group (figure) . X is nitrogen (figure) . . N bonds that are only of the type N-C or N-H (figure) . . . Amine nitrogen is contained in heterocyclic rings (figure) . X is S (figure) . Others
KK KK00
SUBSTITUENTS THAT ARE BONDED TO THE REMAINING RINGS OF THE CONDENSED RING SYSTEM BY CARBON
KK01 KK02 KK03 KK04 KK05 KK06 KK07 KK08 KK09 KK10
. None . Substituents are bonded to the ring carbon . . Substituent groups that contain X . . . X is O . . . X is nitrogen . . . . N bonds that are only of the type N-C or N-H . . . X is S . . . Carboxylic group or functional derivative bonded to the ring carbon (figure) . Substituents are bonded to the ring nitrogen . Others
LL LL00
SUBSTITUENTS THAT ARE BONDED TO THE REMAINING RINGS OF THE CONDENSED RING SYSTEM BY X
LL01 LL02 LL03 LL04 LL05 LL06 LL07 LL08 LL09 LL10
. None (figure) . Hetero atom is halogen (figure) . Hetero atom is O (figure) . . Substituents that are bonded to the remaining rings of the condensed ring system by carbonyl carbon (figure) . . Hydroxyl group (figure) . X is nitrogen (figure) . . N bonds that are only of the type N-C or N-H (figure) . . . Heterocyclic rings (figure) . X is S (figure) . Others
PP PP00
RING OTHER THAN CONDENSED RING SYSTEMS
PP01 PP02 PP03 PP04 PP05 PP06 PP07 PP08 PP09 PP10
. None . Carbon ring . . Aromatic carbon ring . . Saturated carbon ring . Heterocyclic rings . . Single heterocyclic rings . . . Heterocyclic rings wherein only oxygen is substituent . . . Heterocyclic rings wherein only nitrogen is substituent . . . . Five-membered heterocyclic ring . . . . . Pyrrole skeleton (figure)
PP11 PP12 PP13 PP14 PP15 PP16 PP17 PP18 PP19 PP20
. . . . Six-membered heterocyclic ring . . . . . Six-membered heterocyclic ring that contains one nitrogen . . . . . . Piperidine ring (figure) . . . . . Six-membered heterocyclic ring that contains two nitrogen . . . . . . Piperazine ring (figure) . . . Heterocyclic rings wherein only NO is substituent . . . Heterocyclic ring wherein only NS is substituent . . Condensed ring systems with one heterocyclic ring and one carbon ring . . . Quinoline or isoquinoline skeleton (figure) . Others
QQ QQ00
SYNTHESIS METHODS
QQ01 QQ02 QQ03 QQ04 QQ05 QQ07 QQ08 QQ09 QQ10
. Formation of the first ring . Formation of the remaining rings . Transformation of condensed ring systems . Introduction or removal of directly bonded substituent groups to the condensed ring . Substituent transformation . Separation, optical separation, collection, or refining . Methods for manufacture of mixed substances . . Manufacturing method of special salts or hydrates . Others
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