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Organic Reactions Volume 4 - Sciencemadness Dot Org

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392 ORGANIC REACTIONS<br />

Formula<br />

C4H6ON2<br />

C5H6O<br />

C6H8O<br />

C5H4O2<br />

C5Hj0O2<br />

C5H8O^<br />

C6H5ON<br />

C5H5ON<br />

CoH10O<br />

C6Hi2O<br />

C6H4O2<br />

C6H6O2<br />

C6H6O8<br />

C6H4O4<br />

C6H7ON<br />

C7H6O<br />

C7Hi2O<br />

TABLE II<br />

COMPOUNDS REDUCED BY THE WOLFF-KISHNER METHOD<br />

Compound<br />

3-Methylpyrazolone<br />

Cyclopcntenone<br />

Acetylcyclopropane<br />

Acetylcyclopropane<br />

Acetylcyclopropane<br />

Acotylcyclopropane<br />

Cyclobutylaldehyde<br />

Cyclobutylaldchyde<br />

Furfural<br />

Furfural<br />

Furfural<br />

Furfural<br />

3-Furfural<br />

Pontan-2-ono-5-ol<br />

Levulinic acid<br />

a-Pyridone<br />

2-Formylpyrrolo<br />

Cyclohcxanone<br />

Cyclohexanone<br />

Cyclohcxanone<br />

Mcsityl oxido<br />

Allylacetone<br />

Methyl cyclobutyl ketone<br />

Methyl n-butyl ketone<br />

Methyl tem-butyl kotono<br />

Quinone<br />

4-Methyl-3-furaldehyde<br />

5-Hydroxymethylfurfural<br />

a-Furoylformic acid<br />

3-Mothyl-5-formylpyrrole<br />

2-Acetylpyrrole \ f<br />

I<br />

Benzaldchyde<br />

Benzaldehyde<br />

2-Methyl-3-hexen-5-one<br />

C4 and Cg<br />

Product<br />

n-Butyric acid f<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

Pyridine J<br />

Normal<br />

O0<br />

Normal and cyclohcxanol<br />

Normal<br />

Normal<br />

1,1,2-Trimcthylcyclopropane<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

§<br />

Normal<br />

Normal<br />

Normal<br />

Normal<br />

2-Methylpyrrole<br />

Normal<br />

Normal<br />

C7<br />

Normal<br />

Normal<br />

l-Methyl-2-isopropylcyclopropane<br />

Method<br />

WH<br />

KP<br />

K<br />

K<br />

K<br />

WD<br />

K<br />

K<br />

K<br />

WH<br />

K<br />

WH<br />

WH<br />

K<br />

WH<br />

WD<br />

K<br />

WH<br />

WD<br />

KP<br />

K<br />

K<br />

WH<br />

K<br />

-r-<br />

WH<br />

WD[|<br />

WH<br />

WD<br />

WAIf<br />

WD<br />

WA, WS<br />

WDU<br />

K<br />

KP<br />

Yield<br />

41B<br />

Small<br />

—<br />

75B<br />

__<br />

6OA<br />

_<br />

_<br />

—<br />

C9B<br />

76A<br />

72A<br />

__<br />

85-90B<br />

75A<br />

63A<br />

80A<br />

_<br />

—<br />

<br />

83B<br />

_ <br />

—<br />

29B<br />

05A<br />

100A<br />

—<br />

_<br />

50-60A<br />

Small<br />

100<br />

79B<br />

—<br />

Reference*<br />

86a<br />

17<br />

87<br />

88<br />

89<br />

39<br />

87<br />

89<br />

90<br />

2<br />

91<br />

19<br />

92<br />

93<br />

2<br />

11<br />

94<br />

1<br />

39<br />

40<br />

95<br />

93<br />

93<br />

2<br />

96<br />

97a<br />

97<br />

18<br />

98<br />

99<br />

8<br />

12<br />

100<br />

26<br />

20<br />

100a<br />

* References 86a-413 are listed on pp. 416-422.<br />

t There was also formed 39% of 2,3-dimethylpyrazolone.<br />

J This reaction was carried out by boiling the pyridone hydrazone in alkaline solution with copper<br />

sulfate or ferric chloride as catalyst.<br />

§ The monosemicarbazone and monoaminoguanidine derivative gave phenol on boiling with potassium<br />

hydroxide. The di-derivatives gave phenylhydrazine under the same conditions.<br />

Il No alkaline catalyst was used.<br />

9 JH Catalyst used was sodium methoxide.

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