Low energy electron attachment to gas phase royal demolition explosive (RDX) (and RDX-A3) has been performed by means of a crossed electron-molecular beam experiment in an electron energy range from 0 to 14 eV with an energy resolution of 70meV. The most intense signals are observed at 102 and 46 amu and assigned to C2H4N3O2 and NO2, respectively. Anion efficiency curves of 16 anions have been measured. Product ions are observed mainly in the low energy region, near 0 eV arising from surprisingly complex reactions associated with multiple bond cleavages and structural and electronic rearrangement. The remarkable instability of RDX to electron attachment with virtually thermal electrons reflects the highly explosive nature of this compound. The present results are compared to other explosive aromatic nitrocompounds studied in our laboratory recently.

1.
T. F.
Jenkins
,
A. D.
Hewitt
,
C. L.
Grant
,
S.
Thiboutot
,
G.
Ampleman
,
M. E.
Walsh
,
T. A.
Ranney
,
C. A.
Ramsey
,
A. J.
Palazzo
, and
J. C.
Pennington
,
Chemosphere
63
,
1280
(
2006
).
2.
S. A.
McLuckey
and
G. L.
Glish
,
Anal. Chem.
59
,
1670
(
1987
).
3.
S.
Boumsellek
,
S. H.
Alajajian
, and
A.
Chutjian
,
J. Am. Soc. Mass Spectrom.
3
,
243
(
1992
).
4.
J. A.
Laramée
,
P.
Mazurkiewicz
,
V.
Berkout
, and
M. L.
Deinzer
,
Mass Spectrom. Rev.
15
,
15
(
1996
).
5.
J.
Florián
,
L.
Gao
,
V.
Zhukhovskyy
,
D. K.
MacMillan
, and
M. P.
Chiarelli
,
J. Am. Soc. Mass Spectrom.
18
,
835
(
2007
).
6.
P.
Sulzer
,
A.
Mauracher
,
S.
Denifl
,
F.
Zappa
,
S.
Ptasinska
,
M.
Beikircher
,
A.
Bacher
,
N.
Wendt
,
A.
Aleem
,
F.
Rondino
,
S.
Matejcik
,
M.
Probst
,
T. D.
Märk
, and
P.
Scheier
,
Anal. Chem.
79
,
6585
(
2007
).
7.
P.
Sulzer
,
F.
Rondino
,
S.
Ptasinska
,
E.
Illenberger
,
T. D.
Märk
, and
P.
Scheier
,
Int. J. Mass Spectrom.
272
,
149
(
2008
).
8.
P.
Sulzer
,
A.
Mauracher
,
S.
Denifl
,
M.
Probst
,
T. D.
Märk
,
P.
Scheier
, and
E.
Illenberger
,
Int. J. Mass Spectrom.
266
,
138
(
2007
).
9.
A.
Mauracher
,
P.
Sulzer
,
E.
Alizadeh
,
S.
Denifl
,
F.
Ferreira da Silva
,
M.
Probst
,
T. D.
Märk
,
P.
Limão-Vieira
, and
P.
Scheier
,
Int. J. Mass Spectrom.
277
,
123
(
2008
).
10.
H. D.
Flosadottir
,
S.
Denifl
,
F.
Zappa
,
N.
Wendt
,
A.
Mauracher
,
A.
Bacher
,
H.
Jonsson
,
T. D.
Märk
,
P.
Scheier
, and
O.
Ingolfsson
,
Angew. Chem., Int. Ed.
46
,
8057
(
2007
).
11.
D.
Huber
,
M.
Beikircher
,
S.
Denifl
,
F.
Zappa
,
S.
Matejcik
,
A.
Bacher
,
V.
Grill
,
T. D.
Märk
, and
P.
Scheier
,
J. Chem. Phys.
125
,
084304
(
2006
).
12.
N. L.
Asfandiarov
,
S. A.
Pshenichnyuk
,
V. G.
Lukin
,
I. A.
Pshenichnyuk
,
A.
Modelli
, and
S.
Matejcik
,
Int. J. Mass Spectrom.
264
,
22
(
2007
).
13.
K.
Graupner
,
T. A.
Field
,
A.
Mauracher
,
P.
Scheier
,
A.
Bacher
,
S.
Denifl
,
F.
Zappa
, and
T. D.
Märk
,
J. Chem. Phys.
128
,
104304
(
2008
).
14.
L. A.
Curtiss
,
P. C.
Redfern
,
K.
Raghavachari
,
V.
Rassolov
, and
J. A.
Pople
,
J. Chem. Phys.
110
,
4703
(
1999
).
15.
M. J.
Frisch
,
G. W.
Trucks
,
H. B.
Schlegel
 et al., Gaussian, Inc., Wallingford CT,
2004
.
16.
G. J.
Schulz
,
Rev. Mod. Phys.
45
,
423
(
1973
).
17.
S.
Matejcik
,
T. D.
Märk
,
P.
Spanel
,
D.
Smith
,
T.
Jaffke
, and
E.
Illenberger
,
J. Chem. Phys.
102
,
2516
(
1995
).
18.
C.
Tian
and
C. R.
Vidal
,
J. Phys. B
31
,
895
(
1998
).
19.
S.
Feil
,
A.
Bacher
,
M.
Zangerl
,
W.
Schustereder
,
K.
Gluch
, and
P.
Scheier
,
Int. J. Mass Spectrom.
233
,
325
(
2004
).
20.
I.
Bald
,
J.
Kopyra
, and
E.
Illenberger
,
Angew. Chem., Int. Ed.
45
,
4851
(
2006
).
21.
NIST Chemistry webbook: http://webbook.nist.gov/chemistry.
22.
C. D.
Havey
,
M.
Eberhart
,
T.
Jones
,
K. J.
Voorhees
,
J. A.
Laramee
,
R. B.
Cody
, and
D. P.
Clougherty
,
J. Phys. Chem. A
110
,
4413
(
2006
).
23.
P.
Tegeder
,
L.
Lehmann
,
O.
Ingólfsson
, and
E.
Illenberger
,
Z. Phys. Chem.
195
,
217
(
1996
).
24.
P.
Papp
,
J.
Urban
,
S.
Matejcik
,
M.
Stano
, and
O.
Ingólfsson
,
J. Chem. Phys.
125
,
204301
(
2006
).
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