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dc.contributor.author장석복-
dc.date.accessioned2018-12-27T16:30:09Z-
dc.date.available2018-12-27T16:30:09Z-
dc.date.issued1999-
dc.identifier.issn0002-7863-
dc.identifier.otherOAK-12543-
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/247983-
dc.description.abstractWater clusters of salen [N,N'-ethylenebis(salicylideneaminato)] transition metal complexes [(salen)M, M = Cr3+, Mn3+, Co3+] formed by electrospray source have been investigated using a Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer. Kinetics of water evaporation from the cluster ions is observed to be highly dependent on the central metal ion. For example, the evaporation rate of water from solvated salen chromium ion ([SCr + nH2O]+) is significantly slower than that from solvated salen manganese ([SMn + nH2O]+) and solvated salen cobalt ([SCo + nH2O]+) ions. Furthermore, the clusters of salen chromium ions with two waters attached exhibit special stability, indicated by their prominence in the overall cluster distribution. In contrast, no specific solvation is observed for the manganese and cobalt complexes. The lability observed for the hydrated salen cobalt complex suggests that the high-spin state is likely to be involved in the evaporation process. These results are in accordance with observations in solution-phase chemistry and can be explained by ligand field theory.-
dc.languageEnglish-
dc.titleSlow evaporation of water from hydrated salen transition metal complexes in the gas phase reveals details of metal ligand interactions-
dc.typeArticle-
dc.relation.issue43-
dc.relation.volume121-
dc.relation.indexSCI-
dc.relation.indexSCIE-
dc.relation.indexSCOPUS-
dc.relation.startpage10152-
dc.relation.lastpage10156-
dc.relation.journaltitleJournal of the American Chemical Society-
dc.identifier.doi10.1021/ja991658j-
dc.identifier.scopusid2-s2.0-0033520697-
dc.author.googleLee S.-W.-
dc.author.googleChang S.-
dc.author.googleKossakovski D.-
dc.author.googleCox H.-
dc.author.googleBeauchamp J.L.-
dc.date.modifydate20200911081002-
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자연과학대학 > 화학·나노과학전공 > Journal papers
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