a new tri beam tomography instrument

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A New Tri Beam Tomography Instrument Interpenetrating W – Cu BiPhasic Structure Cu W W Cu 2-D Optical View 50 mm Craig J. Hawker, University of California-Santa Barbara, DMR 1121053 The morphological arrangement of materials in a broad array of functional devices (thermoelectrics, fuel cell and battery electrodes, catalysts, ablatives) strongly influences performance. A new “TriBeam” tomography technique has been developed by Echlin, Mottura and Pollock. A femtosecond laser integrated with a focused ion beam platform allows for collection of multimodal (structural, chemical, crystallographic) 3-D information with unprecedented speed. The 3-D dataset of the interpenetrating network of Cu IRG-3 and Facilities

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Cu. IRG-3 and Facilities. Craig J. Hawker, University of California-Santa Barbara, DMR 1121053. A New Tri Beam Tomography Instrument . Interpenetrating W – Cu BiPhasic Structure. Cu. W. 50 m m. W. - PowerPoint PPT Presentation

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Page 1: A New Tri Beam Tomography Instrument

A New Tri Beam Tomography Instrument Interpenetrating W – Cu BiPhasic Structure

Cu

WW

Cu

2-D Optical View

50 mm

Craig J. Hawker, University of California-Santa Barbara, DMR 1121053

The morphological arrangement of materials in a broad array of functional devices (thermoelectrics, fuel cell and battery electrodes, catalysts, ablatives) strongly influences performance. A new “TriBeam” tomography technique has been developed by Echlin, Mottura and Pollock. A femtosecond laser integrated with a focused ion beam platform allows for collection of multimodal (structural, chemical, crystallographic) 3-D information with unprecedented speed. The 3-D dataset of the interpenetrating network of Cu within a Cu-W biphasic material was collected in-situ layer-by-layer in <24 h, with nm-scale resolution at a rate 6 orders of magnitude faster than possible with focused ion beams.

IRG-3 and Facilities