Lee Jihyeon, Kim Min Sun, Kim Hyun Sik, Choe Yoong-Kee, Cho Soo Gyeong, Goh Eun Mee, Kim Jeongkwon
Department of Chemistry, Chungnam National University, Daejeon, Republic of Korea.
Korea Basic Science Institute, 162 Yeongudanji-Ro, Ochang-Eup, Cheongwon-Gu, Cheongju-Si, Chungcheongbuk-Do, 28119, Republic of Korea.
J Mass Spectrom. 2020 Jul 27;56(4):e4632. doi: 10.1002/jms.4632.
Investigation of two common explosives such as cyclonite (RDX) and cyclotetramethylenetetranitramine (HMX) using a mass spectrometer with ultrahigh resolution and accuracy has not been comprehensively performed. Here, ultrahigh mass accuracy 15-T Fourier transform-ion cyclotron resonance mass spectrometry (FT-ICR MS) spectra were utilized to comprehensively characterize the adduct ions of RDX and HMX. Two different ionization sources such as a conventional electrospray ionization (ESI) source and a chip-based static nano-ESI source were used to investigate the adduct ions of RDX and HMX. The ESI-MS analyses of two explosives in negative ion mode provide some adduct ions of RDX and HMX even without prior addition of their corresponding anions. A total of six types of adduct ion were characterized: [M + Cl] , [M + HCOO] , [M + NO ] , [M + CH COO] , [M + NO ] , and [M + C H O ] , where M is either RDX or HMX. The ultrahigh accuracy of the 15-T FT-ICR MS was utilized to distinguish two closely spaced peaks representing the monoisotopic [M + NO ] and second isotopic [M + HCOO] ions, thereby enabling the discovery of a [M + NO ] adduct ion in the ESI analysis of RDX or HMX. [M + NO ] and [M + CH COO] adduct ions were only observed when using a static nano-ESI source. It is the first report explaining the discovery of [M + NO ] adduct ion in the ESI-MS analyses of RDX and HMX.
使用具有超高分辨率和精度的质谱仪对黑索今(RDX)和环四亚甲基四硝胺(HMX)这两种常见炸药进行的研究尚未全面开展。在此,利用超高质量精度的15-T傅里叶变换离子回旋共振质谱(FT-ICR MS)光谱对RDX和HMX的加合离子进行了全面表征。使用了两种不同的电离源,即传统的电喷雾电离(ESI)源和基于芯片的静态纳米ESI源来研究RDX和HMX的加合离子。两种炸药在负离子模式下的ESI-MS分析即使在未预先添加其相应阴离子的情况下也能提供一些RDX和HMX的加合离子。总共表征了六种加合离子:[M + Cl]⁻、[M + HCOO]⁻、[M + NO₂]⁻、[M + CH₃COO]⁻、[M + NO₃]⁻和[M + C₆H₅O₇]⁻,其中M为RDX或HMX。利用15-T FT-ICR MS的超高精度来区分代表单同位素[M + NO₂]⁻和第二同位素[M + HCOO]⁻离子的两个紧密间隔的峰,从而在RDX或HMX的ESI分析中发现了[M + NO₂]⁻加合离子。仅在使用静态纳米ESI源时才观察到[M + NO₂]⁻和[M + CH₃COO]⁻加合离子。这是首次报道在RDX和HMX的ESI-MS分析中发现[M + NO₂]⁻加合离子。