首页> 外文期刊>ScientificWorldJournal >Multistage Fragmentation of Ion Trap Mass Spectrometry System and Pseudo-MS3of Triple Quadrupole Mass Spectrometry Characterize Certain (E)-3-(Dimethylamino)-1-arylprop-2-en-1-ones: A Comparative Study
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Multistage Fragmentation of Ion Trap Mass Spectrometry System and Pseudo-MS3of Triple Quadrupole Mass Spectrometry Characterize Certain (E)-3-(Dimethylamino)-1-arylprop-2-en-1-ones: A Comparative Study

机译:离子阱质谱系统的多级碎片和三重四极杆质谱法的假脉络质谱特征在于(e)-3-(二甲基氨基)-1-芳基-2-烯-1-1-α-酮:比较研究

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A new approach was recently introduced to improve the structure elucidation power of tandem mass spectrometry simulating the MS3of ion trap mass spectrometry system overcoming the different drawbacks of the latter. The fact that collision induced dissociation in the triple quadrupole mass spectrometer system provides richer fragment ions compared to those achieved in the ion trap mass spectrometer system utilizing resonance excitation. Moreover, extracting comprehensive spectra in the ion trap needs multistage fragmentation, whereas similar fragment ions may be acquired from one stage product ion scan using the triple quadrupole mass spectrometer. The new strategy was proven to enhance the qualitative performance of tandem mass spectrometry for structural elucidation of different chemical entities. In the current study we are endeavoring to prove our hypothesis of the efficiency of the new pseudo-MS3technique via its comparison with the MS3mode of ion trap mass spectrometry system. Ten pharmacologically and synthetically important (E)-3-(dimethylamino)-1-arylprop-2-en-1-ones (enaminones4a–j) were chosen as model compounds for this study. This strategy permitted rigorous identification of all fragment ions using triple quadrupole mass spectrometer with sufficient specificity. It can be used to elucidate structures of different unknown components. The data presented in this paper provide clear evidence that our new pseudo-MS3may simulate the MS3of ion trap spectrometry system.
机译:最近引入了一种新的方法来提高串联质谱法的结构阐明功率,模拟MS3OF离子阱质谱系统克服了后者的不同缺点。与利用共振激励的离子陷阱质谱仪系统中实现的相比,碰撞在三重四极孔质谱仪系统中的碰撞诱导解离的事实提供了更富有的片段离子。此外,在离子捕集器中提取综合光谱需要多级碎片,而使用三重四极杆质谱仪可以从一个阶段产品离子扫描中获取类似的片段离子。已证明新策略以提高不同化学实体结构阐明的串联质谱的定性表现。在目前的研究中,我们正在努力通过与离子陷阱质谱系统的MS3Mode的比较来证明新的假MS3Technique的效率的假设。选择十种药理学和合成重要的(e)-3-(二甲基氨基)-1-芳基-2-烯-1--α-α-芳基-J)作为本研究的模型化合物。这种策略允许使用三重四极细质谱仪具有足够特异性的三重四极杆质谱仪严格鉴定所有片段离子。它可用于阐明不同未知组件的结构。本文提出的数据提供了明确的证据表明我们的新伪MS3May模拟了MS3OF离子陷阱光谱系统。

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