Organic Chemistry of Explosives

(coco) #1
Other energetic nitramines 283

Nitramine-nitrates of general structure (133) are known as NENAs and are conveniently


prepared from the nitrative cleavage ofN-alkylaziridines^53 ,^54 with dinitrogen pentoxide or


from the direct nitration of the corresponding aminoalcohols.^55 These compounds find use


as energetic plastisizers in explosive and propellant formulations; Bu-NENA (R=n-Bu) is a


component of some LOVA (low vulnerability ammunition) propellants.^56


NO 2
C
NO 2
134

F +HOCH 2 C

NO 2

NO 2
89

NO 2
C

NO 2
135

CH 2 NHCH 2 CH 2 NHCH 2 C

NO 2

NO 2

FC

NO 2

NO 2

F

C
NO 2
136

CF 2 CH 2 CH 2 NNCH CH 2 C

NO 2

NO 2

NO 2 NO 2 NO 2 NO 2

NO 2

F

HNO 3 , H 2 SO 4

CH 2 NH 2 CH 2 OH

Figure 6.40

A large number of energetic materials containing nitramino functionality in conjunction


with aliphaticC-nitro groups have been reported. Many of these contain dinitromethyl, trini-


tromethyl or fluorodinitromethyl functionality. The bis-nitramine (136) has been synthesized


from the mixed acid nitration of the diamine (135), the latter being the condensation product


of 2-fluoro-2,2-dinitroethylamine (134) with 2,2-dinitro-1,3-propanediol (89). Bis-nitramine


(136) has been suggested as a high-energy oxidizer in propellants.^57


NO 2
C 2 NCH

NO 2

NO 2
137

HO (CH 2 )n CH 2 CO 2 H

NO 2
C 2 NCH

NO 2

NO 2
138

HO (CH 2 )n CH 2 OH

Figure 6.41

Some compounds of general structures (137) and (138) have hydroxy or carboxy termini,


making them potential monomers for the synthesis of energetic polymers (binders) and plas-


ticizers for both explosive and propellant formulations.^58


NO 2
CF
NO 2

N CH 2 C

NO 2

NO 2

F

NO

100 % HNO 3

139
HNO 3 , H 2 SO 4

NaNO 2 , H 2 SO 4 ,
-10 °C

CH 2

NO 2
CF
NO 2

NCH 2 C

NO 2

NO 2

F
141

CH 2

NO 2
CF
NO 2

NCH 2 C

NO 2 NO 2

NO 2

F

140

CH 2

H

Figure 6.42
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