Lutui Marie-Anne, Gilard Françoise, Sablier Michel
Laboratoire des Mécanismes Réactionnels, Ecole Polytechnique, Centre National de la Recherche Scientifique, route de Saclay, Palaiseau cedex, France.
J Mass Spectrom. 2008 Aug;43(8):1123-31. doi: 10.1002/jms.1396.
In the present work, an investigation has been conducted by electrospray ionization (ESI) experiments to characterize the structures of iron gall ink complexes in solution. Simple mono and polyphenolic acid molecules added to iron sulfate salts were chosen to model the recipes of ink composition. Theoretical calculations have been used (1) to determine the stability of the ionic complexes generated in the gas phase, (2) to explain which structures are more likely generated in the electrospray ion source, and (3) to determine which mechanisms are likely involved in their formation. Fragmentation pathways of the derived structures have also been investigated and rationalized to facilitate the interpretation of the data obtained under collisionally induced dissociation (CID) conditions.The present study confirms the assumption that ESI experiments with ions that are preformed in solution must be considered carefully. As a matter of fact, the study of ion formation mechanisms in the ion source is necessary to establish relationships between the ion structures in the condensed phase and the gas phase.
在本研究中,通过电喷雾电离(ESI)实验对溶液中铁胆墨水络合物的结构进行了表征。选择添加到硫酸铁盐中的简单单酚和多酚酸分子来模拟墨水成分配方。理论计算已用于:(1)确定气相中生成的离子络合物的稳定性;(2)解释在电喷雾离子源中更可能生成哪些结构;(3)确定其形成过程中可能涉及哪些机制。还对衍生结构的碎裂途径进行了研究并做出合理解释,以利于对在碰撞诱导解离(CID)条件下获得的数据进行解释。本研究证实了必须谨慎考虑对在溶液中预先形成的离子进行ESI实验这一假设。事实上,研究离子源中的离子形成机制对于建立凝聚相和气相中的离子结构之间的关系是必要的。