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Combined orbital tomography study of multi-configurational molecular adsorbate systems

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dc.contributor.author Kliuiev, Pavel
dc.contributor.author Zamborlini, Giovanni
dc.contributor.author Jugovac, Matteo
dc.contributor.author Gurdal, Yeliz
dc.contributor.author von Arx, Karin
dc.contributor.author Waltar, Kay
dc.contributor.author Schnidrig, Stephan
dc.contributor.author Alberto, Roger
dc.contributor.author Iannuzzi, Marcella
dc.contributor.author Feyer, Vitaliy
dc.contributor.author Hengsberger, Matthias
dc.contributor.author Osterwalder, Juerg
dc.contributor.author Castiglioni, Luca
dc.date.accessioned 2019-12-04T05:26:42Z
dc.date.available 2019-12-04T05:26:42Z
dc.date.issued 2019-11
dc.identifier.citation Kliuiev, P., Zamborlini, G., Jugovac, M., Gurdal, Y., von Arx, K., Waltar, K., Schnidrig, S., Alberto, R., Iannuzzi, M., Feyer, V., Hengsberger, M., Osterwalder, J., & Castiglioni, L. (2019). Combined orbital tomography study of multi-configurational molecular adsorbate systems. Nature Communications, 10, 5255. https://doi.org/10.1038/s41467-019-13254-7 tr_TR
dc.identifier.issn 2041-1723
dc.identifier.uri http://openaccess.adanabtu.edu.tr:8080/xmlui/handle/123456789/641
dc.identifier.uri https://doi.org/10.1038/s41467-019-13254-7
dc.description WOS indeksli yayınlar koleksiyonu. / WOS indexed publications collection. en
dc.description.abstract Molecular reactivity is determined by the energy levels and spatial extent of the frontier orbitals. Orbital tomography based on angle-resolved photoelectron spectroscopy is an elegant method to study the electronic structure of organic adsorbates, however, it is conventionally restricted to systems with one single rotational domain. In this work, we extend orbital tomography to systems with multiple rotational domains. We characterise the hydrogen evolution catalyst Co-pyrphyrin on an Ag(110) substrate and compare it with the empty pyrphyrin ligand. In combination with low-energy electron diffraction and DFT simulations, we fully determine adsorption geometry and both energetics and spatial distributions of the valence electronic states. We find two states close to the Fermi level in Co-pyrphyrin with Co 3d character that are not present in the empty ligand. In addition, we identify several energetically nearly equivalent adsorption geometries that are important for the understanding of the electronic structure. The ability to disentangle and fully elucidate multi-configurational systems renders orbital tomography much more useful to study realistic catalytic systems. tr_TR
dc.language.iso en tr_TR
dc.publisher NATURE COMMUNICATIONS / NATURE PUBLISHING GROUP tr_TR
dc.relation.ispartofseries 2019;Volume: 10 Article Number: 5255
dc.subject ELECTRONIC-STRUCTURE tr_TR
dc.subject ADSORPTION
dc.subject RECONSTRUCTION
dc.subject SPACE
dc.subject Multidisciplinary Sciences
dc.title Combined orbital tomography study of multi-configurational molecular adsorbate systems tr_TR
dc.type Article tr_TR


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