Electrochemical behavior of Si nanostructures in ionic liquids. - In: Materials for energy and power engineering, (2012), S. 17-21
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Investigation of photonic crystal LED coupling properties using spectroscopic ellipsometry. - In: Materials for energy and power engineering, (2012), S. 23-28
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A new method to characterize material properties of copper by microindentation. - In: Materials for energy and power engineering, (2012), S. 29-45
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Carbon nanotubes - properties and applications. - In: Materials for energy and power engineering, (2012), S. 55-60
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Boron doped diamond for trace metal detection. - In: Materials for energy and power engineering, (2012), S. 61-66
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Enhancement of fingerprint topology by sputtered nano-columnar thin films. - In: Materials for energy and power engineering, (2012), S. 67-72
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Incorporation of copper nanoparticles into DLC films during growth by DC PE-CVD method. - In: Materials for energy and power engineering, (2012), S. 85-89
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Materials for energy and power engineering : (Werkstoffe für die Elektrotechnik) ; Ilmenau University of Technology, 4 - 7 September 2012
[Online-Ausg.]. - Ilmenau : Universitätsverlag Ilmenau, 2012. - Online-Ressource (PDF-Datei: 106 S., 6,95 MB). - (Werkstofftechnik aktuell ; 7)Literaturangaben
This booklet represents the proceedings of the workshop "Materials for Energy and Power Engineering" held in September 2012 during the IWK 2012 in Ilmenau. Here, the latest developments related to materials in energy and power engineering are reported. This comprises the latest research results and developments from university and industry. The topics are covering advanced materials for energy transport, advanced materials for energy distribution and delivery, advanced materials for energy storage, advanced materials for energy conversion, and advanced materials for energy control and management. Thus, it gives a current overview of the field of materials for energy and power engineering.
https://www.db-thueringen.de/receive/dbt_mods_00020825
Mechanical properties of cubic SiC, GaN and AlN thin films. - In: Materials science forum, ISSN 1662-9752, Bd. 717/720 (2012), S. 513-516
http://dx.doi.org/10.4028/www.scientific.net/MSF.717-720.513
Formation of Ti 2 AlN nanolaminate films by multilayer-deposition and subsequent rapid thermal annealing. - In: Materials letters, ISSN 1873-4979, Bd. 82 (2012), S. 74-77
http://dx.doi.org/10.1016/j.matlet.2012.05.055