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A Resta

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Articles 8
Citations 40
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Recent Articles
1.
Tran T, Hennes M, Demaille D, Gallas B, Patriarche G, Hrabovsky D, et al.
Nanotechnology . 2024 Dec; 36(9). PMID: 39667025
We present a sequential growth scheme based on pulsed laser deposition, which yields dense arrays of ultrathin, match-shaped Au/CoNi nanopillars, vertically embedded in SrTiOthin films. Analysis of the magnetic properties...
2.
Hellman A, Resta A, Martin N, Gustafson J, Trinchero A, Carlsson P, et al.
J Phys Chem Lett . 2015 Aug; 3(6):678-82. PMID: 26286272
The active phase of Pd during methane oxidation is a long-standing puzzle, which, if solved, could provide routes for design of improved catalysts. Here, density functional theory and in situ...
3.
Avila J, De Padova P, Cho S, Colambo I, Lorcy S, Quaresima C, et al.
J Phys Condens Matter . 2013 Jun; 25(26):262001. PMID: 23759650
By mapping the low-energy electronic dynamics using angle resolved photoemission spectroscopy (ARPES), we have shed light on essential electronic characteristics of the (3 × 3) silicene phase on Ag(111) surfaces....
4.
van Rijn R, Balmes O, Resta A, Wermeille D, Westerstrom R, Gustafson J, et al.
Phys Chem Chem Phys . 2011 Jun; 13(29):13167-71. PMID: 21681289
The surface structure of Pd(100) during CO oxidation was measured using a combination of a flow reactor and in situ surface X-ray diffraction coupled to a large-area 2-dimensional detector. The...
5.
Hinderhofer A, Frank C, Hosokai T, Resta A, Gerlach A, Schreiber F
J Chem Phys . 2011 Mar; 134(10):104702. PMID: 21405179
The structural properties of coevaporated thin films of pentacene (PEN) and perfluoropentacene (PFP) on SiO(2) were studied using x-ray reflectivity and grazing incidence x-ray diffraction. Reciprocal space maps of the...
6.
Klikovits J, Schmid M, Merte L, Varga P, Westerstrom R, Resta A, et al.
Phys Rev Lett . 2009 May; 101(26):266104. PMID: 19437652
Using scanning tunneling microscopy and density functional theory, we have studied the initial oxidation of Rh(111) surfaces with two types of straight steps, having {100} and {111} microfacets. The one-dimensional...
7.
Knapp M, Crihan D, Seitsonen A, Resta A, Lundgren E, Andersen J, et al.
J Phys Chem B . 2006 Jul; 110(29):14007-10. PMID: 16854089
The reduction mechanism of the RuO(2)(110) surface by molecular hydrogen exposure is unraveled to an unprecedented level by a combination of temperature programmed reaction, scanning tunneling microscopy, high-resolution core level...
8.
Klikovits J, Schmid M, Gustafson J, Mikkelsen A, Resta A, Lundgren E, et al.
J Phys Chem B . 2006 May; 110(20):9966-75. PMID: 16706454
The reduction of the surface oxide on Rh(111) by H(2) was observed in situ by scanning tunneling microscopy (STM) and high-resolution core level spectroscopy (HRCLS). At room temperature, H(2) does...