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Book Synopsis
Materials science encompasses four classes of materials, the study of each of which may be considered a separate field: metals, ceramics, polymers and composites. This volume gathers important research from around the globe in this dynamic field including research on the status and perspectives of organic photovoltaic cells; room temperature silicon carbide thin-film formation; microcapsule based self-healing thermosetting materials for structural applications; donor-accepted interface and conversion efficiency; silicon carbide as a catalytic support for energy and environmental applications; transmission electron microscopy application on y-Al2O3 single crystal formation during NiAl oxidation and applied to fuel cell materials characterisation; low pressure deposition techniques of silicon carbide thin films; automated crystal orientation mapping in a transmission electron microscope in electrodeposited nanocrystalline nickel; pharmaceutical application of positron annihilation lifetime spectroscopy; and fabrication and characterisation of C60-based solar cells with phthalocyanine, poly-vinylcarbazole and germanium bromide.

Advances in Materials Science Research: Volume 16

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A Hardback by Maryann C Wythers

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    View other formats and editions of Advances in Materials Science Research: Volume 16 by Maryann C Wythers

    Publisher: Nova Science Publishers Inc
    Publication Date: 01/07/2013
    ISBN13: 9781626183025, 978-1626183025
    ISBN10: 1626183023

    Description

    Book Synopsis
    Materials science encompasses four classes of materials, the study of each of which may be considered a separate field: metals, ceramics, polymers and composites. This volume gathers important research from around the globe in this dynamic field including research on the status and perspectives of organic photovoltaic cells; room temperature silicon carbide thin-film formation; microcapsule based self-healing thermosetting materials for structural applications; donor-accepted interface and conversion efficiency; silicon carbide as a catalytic support for energy and environmental applications; transmission electron microscopy application on y-Al2O3 single crystal formation during NiAl oxidation and applied to fuel cell materials characterisation; low pressure deposition techniques of silicon carbide thin films; automated crystal orientation mapping in a transmission electron microscope in electrodeposited nanocrystalline nickel; pharmaceutical application of positron annihilation lifetime spectroscopy; and fabrication and characterisation of C60-based solar cells with phthalocyanine, poly-vinylcarbazole and germanium bromide.

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