Alloy Thin-films and Surfaces for New Materials. Final Report

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Description

Within the framework of a DOE National Laboratory/EPSCoR state partnership, investigations by researchers at Louisiana State University and Oak Ridge National Laboratory were focused on revealing the unique nanophase properties of alloy thin-films and bimetallic surfaces. Employing a number of experimental preparation techniques and characterization probes (synchrotron-based angle-resolved and valence/core-level PES and variable-temperature STM/STS), the goal of this program was to elucidate of the interconnecting physical and chemical properties of a variety of alloy surfaces and thin-films, specifically, determining the correlation between atomic structure/composition, electronic structure, and catalytic/chemisorption properties of these nanoscale.

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Sprunger, P. T. August 10, 2003.

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Description

Within the framework of a DOE National Laboratory/EPSCoR state partnership, investigations by researchers at Louisiana State University and Oak Ridge National Laboratory were focused on revealing the unique nanophase properties of alloy thin-films and bimetallic surfaces. Employing a number of experimental preparation techniques and characterization probes (synchrotron-based angle-resolved and valence/core-level PES and variable-temperature STM/STS), the goal of this program was to elucidate of the interconnecting physical and chemical properties of a variety of alloy surfaces and thin-films, specifically, determining the correlation between atomic structure/composition, electronic structure, and catalytic/chemisorption properties of these nanoscale.

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vp.

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OSTI as DE00823534

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  • Other Information: PBD: 10 Aug 2003

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  • Grant Number: FG02-98ER45712
  • DOI: 10.2172/823534 | External Link
  • Office of Scientific & Technical Information Report Number: 823534
  • Archival Resource Key: ark:/67531/metadc782785

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  • August 10, 2003

Added to The UNT Digital Library

  • Dec. 3, 2015, 9:30 a.m.

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  • Aug. 4, 2016, 7:29 p.m.

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Sprunger, P. T. Alloy Thin-films and Surfaces for New Materials. Final Report, report, August 10, 2003; United States. (digital.library.unt.edu/ark:/67531/metadc782785/: accessed August 21, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.