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dc.contributor.authorCarl, D. R.
dc.contributor.authorChatterjee, Barun Kumar
dc.contributor.authorArmentrout, P. B.
dc.date.accessioned2012-11-29T09:18:14Z
dc.date.available2012-11-29T09:18:14Z
dc.date.issued2010-01-28
dc.identifierFOR ACCESS / DOWNLOAD PROBLEM -- PLEASE CONTACT LIBRARIAN, BOSE INSTITUTE, akc@bic.boseinst.ernet.inen_US
dc.identifier.citationCarl DR, Chatterjee B K and Armentrout P B (201 0) Threshold collision-induced dissociation of Sr2+H20 x complexes (X=1-6): An experimental and theoretical investigation of the complete inner shell hydration energies of Sr2+, J. Chern. Phys., 132, 044303.en_US
dc.identifier.issn0021-9606
dc.identifier.uri1. Full Text Link ->
dc.identifier.urihttp://jcp.aip.org/resource/1/jcpsa6/v132/i4/p044303_s1en_US
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dc.identifier.uri2. Scopus : Citation Link ->en_US
dc.identifier.urihttp://www.scopus.com/record/display.url?eid=2-s2.0-75749129066&origin=resultslist&sort=plf-f&src=s&st1=Threshold+collision-induced+dissociation+of&st2=Chatterjee%2cB.+K.&sid=vt4Gq2k9s1V1prHImmw6gj2%3a360&sot=b&sdt=b&sl=99&s=%28TITLE-ABS-KEY-AUTH%28Threshold+collision-induced+dissociation+of%29+AND+AUTHOR-NAME%28Chatterjee%2cB.+K.%29%29&relpos=0&relpos=0&searchTerm=%28TITLE-ABS-KEY-AUTH%28Threshold%20collision-induced%20dissociation%20of%29%20AND%20AUTHOR-NAME%28Chatterjee,B.%20K.%29%29en_US
dc.descriptionDOI: 10.1063/1.3292646en_US
dc.description.abstractThe sequential bond energies of Sr2+(H2O)(x) complexes, where x=1-6, are determined by threshold collision-induced dissociation using a guided ion beam tandem mass spectrometer equipped with an electrospray ionization source. The electrospray source produces an initial distribution of Sr2+(H2O)(x) complexes, where x=6-9. Smaller Sr2+(H2O)(x) complexes, where x=1-5, are accessed using a recently developed in-source fragmentation technique that takes place in the high pressure region of a rf-only hexapole ion guide. This work constitutes the first experimental study for the complete inner shell of any multiply charged ion. The kinetic energy dependent cross sections are determined over a wide energy range to monitor all possible dissociation products and are modeled to obtain 0 and 298 K binding energies for loss of a single water molecule. These binding energies decrease monotonically for the Sr2+(H2O) complex to Sr2+(H2O)(6). Our experimental results agree well with previous literature results obtained by equilibrium and kinetic studies for x=5 and 6. Because there has been limited theory for the hydration of Sr2+, we also present an in-depth theoretical study on the energetics of the Sr2+(H2O)(x) systems by employing several levels of theory with multiple effective core potentials for Sr and different basis sets for the water molecules.en_US
dc.description.sponsorshipNational Science Foundation 0748790 Arches Cluster at the University of Utah's Center for High Performance Computing (CHPC)en_US
dc.language.isoenen_US
dc.publisherAMER INST PHYSICSen_US
dc.subjectbinding energyen_US
dc.subjectbonds (chemical)en_US
dc.subjectdissociationen_US
dc.subjectionisationen_US
dc.subjectmass spectraen_US
dc.subjectmolecule-molecule collisionsen_US
dc.subjectsolvationen_US
dc.subjectstrontiumen_US
dc.subjectwateren_US
dc.titleThreshold collision-induced dissociation of Sr2+(H2O)(x) complexes (x=1-6): An experimental and theoretical investigation of the complete inner shell hydration energies of Sr2+en_US
dc.title.alternativeJOURNAL OF CHEMICAL PHYSICSen_US
dc.typeArticleen_US


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