通过串联离子迁移率光谱法中的热分解和串联质谱法中的碰撞诱导解离从炸药硝酸盐加合物中损失 NO3-

IF 1.6 3区 化学 Q3 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Alexander Haack , Bhupendra K. Gurung , Gary A. Eiceman
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引用次数: 0

摘要

硝酸甘油(NG)和 1,3-二硝化甘油(1,3-DNG)的硝酸盐加合物是通过氯试剂离子的常压化学电离和 M-Cl- 的源内分解产生的。硝酸加合物随后在漂移区解离,NG-NO3- 在 142-150 ℃ 时的热焓为 109 ± 9 kJ mol-1,1,3-DNG-NO3- 在 161-173 ℃ 时的热焓为 101 ± 8 kJ mol-1。虽然使用电喷雾电离硝酸盐溶液可以形成每种爆炸物的硝酸盐加合物,但在其他爆炸物中一般观察不到类似的行为。利用串联质谱中的碰撞诱导解离技术,在一定离子能量范围内测量了离子丰度,并利用密度泛函理论模型将实验结果与结构模式和其他加合物特性联系起来。计算模型显示,硝酸根离子与中性炸药偶极矩之间的静电相互作用主导了加成物的稳定性。具体来说,具有适应大偶极矩构象能力的炸药显示出最稳定的加合物。在本文研究的爆炸物加合物中,其他结合作用可能微乎其微。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

NO3− loss from nitrate adducts of explosives by thermal decomposition in tandem Ion mobility spectrometry and by collision induced dissociation in tandem mass spectrometry

NO3− loss from nitrate adducts of explosives by thermal decomposition in tandem Ion mobility spectrometry and by collision induced dissociation in tandem mass spectrometry

Nitrate adducts of nitroglycerin (NG) and 1,3-dinitroglycerin (1,3-DNG) were produced from atmospheric pressure chemical ionization with chloride reagent ions and in-source decomposition of M·Cl. The nitrate adducts subsequently dissociated in the drift region with enthalpies of 109 ± 9 kJ mol −1 at 142–150 °C for NG·NO3 and 101 ± 8 kJ mol−1 at 161–173 °C for 1,3-DNG·NO3. Similar behavior was not observed generally for other explosives although nitrate adducts of each explosive could be formed using electrospray ionization with a nitrate salt solution. Ion abundances were measured over a range of ion energies with collision induced dissociation in tandem mass spectrometry and models from Density Functional Theory were used to correlate the experimental findings to structural motifs and other adduct properties. The computational modeling showed that adduct stability is dominated by the electrostatic interaction between the nitrate ion and the dipole moment of the neutral explosive. Specifically, explosives having the ability to adapt a conformer with a large dipole moment showed the most stable adducts. Other binding contributions are possible yet were found to be minor in the explosive adducts studied here.

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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
145
审稿时长
71 days
期刊介绍: The journal invites papers that advance the field of mass spectrometry by exploring fundamental aspects of ion processes using both the experimental and theoretical approaches, developing new instrumentation and experimental strategies for chemical analysis using mass spectrometry, developing new computational strategies for data interpretation and integration, reporting new applications of mass spectrometry and hyphenated techniques in biology, chemistry, geology, and physics. Papers, in which standard mass spectrometry techniques are used for analysis will not be considered. IJMS publishes full-length articles, short communications, reviews, and feature articles including young scientist features.
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