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22篇 您的检索式:作者名="Emmerlich"
    题名 作者 年代 出处 被引量
1The Sandfish's Skin:Morphology,Chemistry and Reconstruction显示文摘The sandfish is a lizard having the remarkable ability to move in desert sand in a swimming-like fashion. The most out-standing adaptations to this mode of life are the low friction behaviour and the extensive abrasion resistance of the sandfish skin against sand, outperforming even steel. We investigated the topography, the composition and the mechanical properties of sandfish scales. These consist of glycosylated keratins with high amount of sulphur but no hard inorganic material, such as silicates or lime. Remarkably, atomic force microscopy shows an almost complete absence of attractive forces between the scale surface and a silicon tip, suggesting that this is responsible for the unusual tribological properties. The unusual glycosylation of the keratins was found to be absolutely necessary for the described phenomenon. The scales were dissolved and reconstituted on a polymer surface resulting in properties similar to the original scale. Thus, we provide a pathway towards exploitation of the reconstituted scale material for future engineering applications.Werner Baumgartner Friederike Saxe Agnes Weth David Hajas Darwin Sigumonrong Jens Emmerlich Martin Singheiser Wolfgang Bhme Jochen M. Schneider 2007Journal of Bionic Engineering2007,4,1:10
2Growth and characterization of MAX-phase thin films 显示文摘HOGBERG H HULTMAN L EMMERLICH J 2005Surface & Coatings Technology2005,193,:1
3Growth and Characterization of MAX phase Thin Films显示文摘Hogberg H Huhman L Emmerlich J 2005Surface & Coatings Technology2005,193,:1
4Strategies to main-tain redox homeostasis during photosynthesis under changing condi- tions显示文摘Scheibe R Backhausen dl E Emmerlich V 2005JExp Bot2005,56,:1
5Epitaxial Ti2GeC,Ti3GeC2,and Ti4GeC3 MAX-phase thin films grown by magnetron sputtering显示文摘H(o)gberg H Eklund P Emmerlich J 0,,04:1
6Strategies to maintain redox homeostasis during photosynthesis under chan-ging conditions显示文摘Scheibe R Backhausen J E Emmerlich V 2005Journal of Experimental Botany2005,56,:1
7Structural, electrical, and mechanical properties of nc-TiC/a-SiC nanocomposite thin films 显示文摘Eklund P Emmerlich J Hsgberg H 2005Journal of Vacuum Science Technology B2005,23,10:1
8Synthesis and characterization of Ti-Si-C compounds for electrical contact applications显示文摘Eklund P Emmerlich J Hogbberg H 2005Electrical Contacts2005,2628,:1
9Isolation and subunit composition of the 20S proteasome of Giardia lamblia显示文摘EMMERLICH V SANTARIUS U BAKKERGRUNWALD T 1999Mol Biochem Parasitol1999,100,13:1
10Oxygen incorporation in M 2 AlC (M=Ti, V, Cr)显示文摘Moritz Baben Lin Shang Jens Emmerlich Jochen M. Schneider 2012Acta Materialia2012,,:1
11High-power im-pulse magnetron sputtering of Ti-Si-C thin films from a Ti3SiC2 compound target 显示文摘Alami J Eklund P Emmerlich J 2006Thiu Solid Films2006,515,4:1
12Interfacial structure of V 2 AlC thin films deposited on ( 1 1 2 ˉ 0 ) -sapphire显示文摘Darwin P. Sigumonrong Jie Zhang Yanchun Zhou Denis Music Jens Emmerlich Joachim Mayer Jochen M. Schneider 2010Scripta Materialia2010,,:1
13A proposal for an unusually stiff and moderately ductile hard coating material:MozBC 显示文摘EMMERLICH J MUSIC D BRAUN M 2009J Phys D: Appl Phys2009,42,18:1
14High-power impulse magnetron sputtering of Ti-Si-C thin films from a Ti3SiC2 compound target 显示文摘Alami 2 Eklund P Emmerlich J 2006Thin Solid Films2006,515,4:1
15The Physical Reason for the Apparently Low Deposition Rate During High-power Pulsed Magnetron Sputtering显示文摘EMMERLICH J STANISLAY M SNYDERS R 2008Va- cuum2008,82,:1
16Kink formation around indents in laminated Ti3SiC2 thin films studied in the nanoscale 显示文摘Molina-Aldareguia J M Emmerlich J Palmquist J-P 2003Scripta Materialia2003,49,2:1
17Micro and maeroscale tribological behavior of epitaxial Ti3 SiC2 thin films 显示文摘Emmerlich J Gassner G Eklund P 2008Wear2008,264,:1
18Homoepitaxial growth of Ti-Si-C MAX-phase thin films on bulk Ti3SiC2 substrates 显示文摘Eklund P Murugaiah A Emmerlich J 2007Journal of Crystal Growth2007,304,:1
19The physical reason for the apparently low deposition rate during high-power pulsed magnetron sputtering显示文摘Jens Emmerlich Stanislav Mráz Rony Snyders Kaiyun Jiang Jochen M. Schneider 2007Vacuum2007,,8:1
20Strategies to maintain redox homeostasis during photosynthesis un- der changing conditions显示文摘Scheibe R Baekhausen J E Emmerlich V 2005Journal of Experimental Botany2005,56,416:1
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