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10篇 您的检索式:作者名="Seyring M"
    题名 作者 年代 出处 被引量
1Detection and identification of endophytic bacteria in plant tissue cultures of Primula vuigaris Huds显示文摘Seyring M 1998Gartenbauwissnschaft1998,63,1:1
2Characterization of precipitate evolution in an artificially aged Al-Zn-Mg-Sc-Zr alloy显示文摘WU L M SEYRING M RETTENMAYR M WANG W H 2010Materials Science and Engineering A2010,527,10:1
3Comparative analysis of cell cycle events in zygotic and somatic embryos of Cyclamen persicum indicates strong resemblance of somatic embryos to recalcitrant seeds显示文摘Schmidt T H Ewald A Seyring M Hohe A 2006Plant Cell Rep2006,25,7:1
4Characterization of precipitate evolution in an artificially aged A1-Zn-Mg-Sc-Zr alloy 显示文摘WU L M SEYRING M M RETTENMARY M 2010Materials Science and Engineering A2010,527,12:1
5Crystal structure and magnetic performanceof single-phase nanocrystalline SmCo? alloy 显示文摘ZHANG Z X SONG X Y XU W W SEYRING M RETTENMAYR M 2010ScriptaMaterialia2010,62,:1
6Characterization of precipitate evolution in an artificial- ly aged A1-Zn-Mg-Sc-Zr alloy显示文摘WU Ling-mei SEYRING M RETFENMAYR M 2010Materials Science and Engineering A2010,527,:1
7Detection and identification of endophytic bacteria in plant tissue cultures of Primula vulgaris Huds 显示文摘Seyring M 1998Garten-bauwissnschaft1998,63,1:1
8Loss rate is still too high显示文摘Seyring M 2000TASPO Gartenbaumazin2000,10,2:1
9Characterizationof precipitate evolution in an artificially aged Al-Zn-Mg-Sc-Zralloy显示文摘WU Ling-mei Seyring M Rettenmayr M 2010Materials Science and Engineering A2010,527,45:1
10Low-energy ion channeling in nanocubes显示文摘Focused ion beam(FIB)processing with low-energy ions has become a standard technique for the manipulation of nanostructures.Many underlying ion beam effects that deviate from conventional high-energy ion irradiation of bulk systems are considered today;however,ion channeling with its consequence of significant deeper penetration depth has been only theoretically investigated in this regime.We present here an experimental approach to determine the channeling of low-energy ions in crystalline nanoparticles by measuring the sputter yield derived from scanning electron microscopy(SEM)images taken after irradiation under various incident ion angles.Channeling maps of 30 and 20 keV Ga+ions in Ag nanocubes have been identified and fit well with the theory.Indeed,channeling has a significant impact on the transport of energetic ions in crystals due to the large critical angle at low ion energies,thus being relevant for any FIB-application.Consequently,the obtained sputter yield clearly differs from amorphous materials;therefore,it is recommended not to rely only on,e.g.,ion distribution depths predicted by standard Monte-Carlo(MC)algorithms for amorphous materials.Shiva Choupanian Wolfhard Möller Martin Seyring Carsten Ronning 2023Nano Research2023,16,1:0
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