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Synthesis and Detonation Properties of 5-Amino-2,4,6-trinitro-1,3-dihydroxy-benzene.


ABSTRACT: 5-Amino-4,6-dinitro-1,3-dihydroxy-benzene (6) was synthesized through the ring-opening reaction of macrocyclic compound?4 with the aid of VNS (vicarious nucleophilic substitution of hydrogen) reaction conditions. The mechanism of ring opening of macrocyclic compound?4 was studied. 5-Amino-2,4,6-trinitro-1,3-dihydroxy-benzene (8) was obtained after the nitration of 6 in KNO3 and concentrated sulfuric acid. The thermal stability, sensitivity, and other detonation performances of 6 or 8 were compared to commercially used 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) or 1,3,5-trinitrotriazacyclohexane (RDX), respectively. All target compounds were characterized by using single-crystal X-ray diffraction, NMR spectroscopy, elemental analysis, and differential scanning calorimetry. The sensitivities were determined by using BAM methods (drop-hammer and friction tests). Performance parameters, including heats of formation and detonation properties, were calculated by using Gaussian?03 and EXPLO5 v6.01 programs, respectively. It is worth pointing out that compound?8 has a remarkable measured density of 2.078?g?cm-3 at 298?K. In addition, compound?8 is more insensitive than RDX (compound?8: IS=11?J; RDX: IS=7?J; IS is the impact sensitivity).

SUBMITTER: Zhang X 

PROVIDER: S-EPMC5474657 | biostudies-other | 2017 Jun

REPOSITORIES: biostudies-other

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Synthesis and Detonation Properties of 5-Amino-2,4,6-trinitro-1,3-dihydroxy-benzene.

Zhang Xingcheng X   Xiong Hualin H   Yang Hongwei H   Cheng Guangbin G  

ChemistryOpen 20170322 3


5-Amino-4,6-dinitro-1,3-dihydroxy-benzene (<b>6</b>) was synthesized through the ring-opening reaction of macrocyclic compound <b>4</b> with the aid of VNS (vicarious nucleophilic substitution of hydrogen) reaction conditions. The mechanism of ring opening of macrocyclic compound <b>4</b> was studied. 5-Amino-2,4,6-trinitro-1,3-dihydroxy-benzene (<b>8</b>) was obtained after the nitration of <b>6</b> in KNO<sub>3</sub> and concentrated sulfuric acid. The thermal stability, sensitivity, and other  ...[more]

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