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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >IRMPD action spectroscopy of alkali metal cation-cytosine complexes: Effects of alkali metal cation size on gas phase conformation
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IRMPD action spectroscopy of alkali metal cation-cytosine complexes: Effects of alkali metal cation size on gas phase conformation

机译:碱金属阳离子-胞嘧啶络合物的IRMPD作用光谱:碱金属阳离子大小对气相构象的影响

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摘要

The gas-phase structures of alkali metal cation-cytosine complexes generated by electrospray ionization are probed via infrared multiple photon dissociation (IRMPD) action spectroscopy and theoretical calculations. IRMPD action spectra of five alkali metal cation-cytosine complexes exhibit both similar and distinctive spectral features over the range of ~1000-1900 cm ~(-1). The IRMPD spectra of the Li~+(cytosine), Na ~+(cytosine), and K~+(cytosine) complexes are relatively simple but exhibit changes in the shape and shifts in the positions of several bands that correlate with the size of the alkali metal cation. The IRMPD spectra of the Rb~+(cytosine) and Cs~+(cytosine) complexes are much richer as distinctive new IR bands are observed, and the positions of several bands continue to shift in relation to the size of the metal cation. The measured IRMPD spectra are compared to linear IR spectra of stable low-energy tautomeric conformations calculated at the B3LYP/def2-TZVPPD level of theory to identify the conformations accessed in the experiments. These comparisons suggest that the evolution in the features in the IRMPD action spectra with the size of the metal cation, and the appearance of new bands for the larger metal cations, are the result of the variations in the intensities at which these complexes can be generated and the strength of the alkali metal cation-cytosine binding interaction, not the presence of multiple tautomeric conformations. Only a single tautomeric conformation is accessed for all five alkali metal cation-cytosine complexes, where the alkali metal cation binds to the O2 and N3 atoms of the canonical amino-oxo tautomer of cytosine, M~+(C _1). [Figure not available: see fulltext.]
机译:通过红外多光子离解(IRMPD)作用光谱和理论计算,探索了电喷雾电离产生的碱金属阳离子-胞嘧啶配合物的气相结构。在〜1000-1900 cm〜(-1)范围内,五种碱金属阳离子-胞嘧啶络合物的IRMPD作用谱显示出相似和独特的光谱特征。 Li〜+(胞嘧啶),Na〜+(胞嘧啶)和K〜+(胞嘧啶)配合物的IRMPD谱图相对简单,但显示出形状变化和与条带大小相关的几个条带的位置变化。碱金属阳离子。 Rb〜+(胞嘧啶)和Cs〜+(胞嘧啶)配合物的IRMPD光谱要丰富得多,因为观察到了独特的新IR谱带,并且几个谱带的位置相对于金属阳离子的大小仍在不断变化。将测得的IRMPD光谱与在理论上的B3LYP / def2-TZVPPD水平计算的稳定的低能量互变异构构象的线性IR光谱进行比较,以鉴定实验中获得的构象。这些比较表明,IRMPD作用谱中特征随金属阳离子大小的变化以及较大金属阳离子出现新谱带的出现是这些复合物生成强度变化的结果。和碱金属阳离子-胞嘧啶结合相互作用的强度,而不是多个互变异构构象的存在。对于所有五个碱金属阳离子-胞嘧啶复合物,仅访问单个互变异构构象,其中碱金属阳离子与胞嘧啶的典型氨基-氧代互变异构体M〜+(C _1)的O2和N3原子结合。 [图不可用:请参见全文。]

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