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首页> 外文期刊>European journal of mass spectrometry >Electrospray tandem mass spectrometry of beta-nitroalkenyl meso-tetraphenylporphyrins
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Electrospray tandem mass spectrometry of beta-nitroalkenyl meso-tetraphenylporphyrins

机译:β-硝基烯基间四苯基卟啉的电喷雾串联质谱

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beta-Nitroatkenyt meso-tetra phenylporphyrins [beta-TPPCHC(NO2)R)], as free-bases and Zn(II) complexes, were studied by electrospray mass spectrometry (ESI-MS). Under this ionisation condition the [M+H](+) ions are formed. The fragmentation pattern of the resulting [M+H](+) ions were studied by electrospray tandem mass spectrometry (ESI-MS/MS). The ESI-MS/MS of beta-nitroalkenylporphyrins, either as free-bases or as Zn(II) complexes, show several interesting features, distinct from the typical behaviour of nitro compounds. For the studied compounds, common main fragmentation patterns are observed, namely characteristic losses of NO2 center dot, HNO2, 20H(center dot), RNO2, RCNO, RCNO2, RCH2NO2, C6H(5)(center dot) plus NO2 center dot and the formation of the protonated macrocycle, [TPP+H](+) or [ZnTPP+H](+). However, depending on the presence or absence of the metal and the nature of the R substituent, important differences are observed on the relative abundances of the ions formed by the same fragmentation pathway. The presence of bromine in the alkenyl group leads to a peculiar behaviour, since the main fragmentation pattern corresponds to the combined elimination of the bromine atom with the typical nitro group fragments. When R=Br, the loss of the nitro group occurs in low relative abundance (11-16%). However, when R=CH3, the relative abundance of the ion due to the loss of HNO2 changes drastically from 100%, observed for the free-base porphyrin, to 29% in the case of the Zn(II) complex. These variations of the relative abundance of the fragment corresponding to the toss of the nitro moiety (typically considered as a diagnostic fragment) can induce to an erroneous interpretation of their MS/MS spectra. Some fragmentations are observed only for the free-base porphyrins, namely the loss of (CH)-C-center dot(NO2)R and HNO2 plus C2H2, white the loss of OH center dot, H2O, OH center dot plus H2O and RCCH plus H2O is observed only for the complexes. Unusual and unexpected fragmentations are also observed, namely the tosses of RCNO, RCNO2 and HNO2 plus C2H2. This work demonstrates that valuable structural information about the beta-nitroalkenyl substituents linked to mesotetraarylporphyrins can be achieved using MS/MS. These results can also be useful for the interpretation of the mass spectra of other nitroalkenyl substituted compounds.
机译:通过电喷雾质谱法(ESI-MS)研究了作为游离碱和Zn(II)配合物的β-硝基硝基间苯二甲酸四苯基卟啉[β-TPPCHC(NO2)R)。在该电离条件下,形成[M + H](+)离子。通过电喷雾串联质谱法(ESI-MS / MS)研究了所生成的[M + H](+)离子的碎裂模式。 β-硝基烯基卟啉的ESI-MS / MS,无论是游离碱还是Zn(II)络合物,都具有一些有趣的特征,与硝基化合物的典型行为不同。对于所研究的化合物,观察到常见的主要裂解模式,即NO2中心点,HNO2、20H(中心点),RNO2,RCNO,RCNO2,RCH2NO2,C6H(5)(中心点)加上NO2中心点和质子化大环[TPP + H](+)或[ZnTPP + H](+)的形成。然而,取决于金属的存在与否以及R取代基的性质,在通过相同的裂解途径形成的离子的相对丰度上观察到重要的差异。烯基中溴的存在会导致特殊的行为,因为主要的断裂方式对应于溴原子与典型硝基残基的结合消除。当R = Br时,硝基的损失以较低的相对丰度(11-16%)发生。但是,当R = CH3时,由于HNO2的损失而导致的离子相对丰度从对于游离碱卟啉观察到的100%急剧变化,对于Zn(II)络合物而言则变为29%。与硝基部分折腾相对应的片段相对丰度的这些变化(通常被视为诊断片段)可能导致其MS / MS谱图的错误解释。仅对于游离碱卟啉观察到一些碎片,即(CH)-C中心点(NO2)R和HNO2加C2H2的损失,白色OH中心点,H2O,OH中心点加H2O和RCCH的损失仅在配合物中观察到加水。还观察到了异常和意外的碎片,即RCNO,RCNO2和HNO2加C2H2的抛弃。这项工作表明,可以使用MS / MS获得有关与中四芳基卟啉连接的β-硝基烯基取代基的有价值的结构信息。这些结果也可用于解释其他硝基烯基取代的化合物的质谱。

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