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2
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0024324911
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4
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33645680640
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EP 315997 A2 890517
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d) K. Iwamatsu, K. Sakagami, K. Atsumi, T. Yoshida. S. Shibahara, T. Tusuoka, and S. Kondo, EP 315997 A2 890517 (Chem. Abstr., 1989, 111, 214321).
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Iwamatsu, K.1
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Yoshida, T.4
Shibahara, S.5
Tusuoka, T.6
Kondo, S.7
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5
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0024324911
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e) C. B. Ziegler, W. V. Curran, N. A. Kuck, and S. M. Harris, J. Heterocycl. Chem., 1989, 26, 1141.
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Ziegler, C.B.1
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6
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33645663850
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WO 9507283 Al 950316
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f) K. Kawabata, T. Terasawa, A. Ohki, F. Shirai, and H. Yamamoto, WO 9507283 Al 950316 (Chem. Abstr., 1995, 122, 290587.
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33645688501
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At the same time H. Kondo also developed the same procedure for the synthesis of 2
-
At the same time H. Kondo also developed the same procedure for the synthesis of 2.
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11
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33645666271
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EP 103, 840
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a) K. Sakai, D. Tsunemoto, T. Kobori, and H. Kondo. EP 103, 840 (Chem. Abstr., 1984, 101, 72730q).
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Tsunemoto, D.2
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Kondo, H.4
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13
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0142084311
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K. Bott, Chem. Ber., 1975, 108, 402.
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Bott, K.1
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15
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33645699144
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note
-
8 2: 196.0°C 778 mJ/mg. 3: 105.9°C 1.577 mJ/mg. Perbenzoic Acid: 108. 1°C 1.428 mJ/mg. 2.4-Dinitrotoluene: 319.8 °C 4.246 mJ/mg. Decomposition temperature of 3 is lower than that of 1 though the calorific value is almost the same. Therefore, 3 should be as explosive as 1, perbenzoic acid and 2,4-dinitrotoluene.
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-
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16
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33645684417
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S. Morisaki, K. Muranaga, S. Tamura, and T. Yoshida, Kogyo Kayaku, 1984, 45, 73.
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Morisaki, S.1
Muranaga, K.2
Tamura, S.3
Yoshida, T.4
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