Publications of Michael Meischein
All genres
    
  Journal Article (7)
1.
        
            Journal Article
            
           Exploring stability of a complex solid solution thin film by in-situ heating transmission electron microscopy. MRS Bulletin 47 (8), pp. 371 - 378 (2022)
          2.
        
            Journal Article
            
           Elemental (im-)miscibility determines phase formation of multinary nanoparticles co-sputtered in ionic liquids. Nanoscale Advances 4 (18), pp. 3855 - 3869 (2022)
          3.
        
            Journal Article
            
           Synthesis of plasmonic Fe/Al nanoparticles in ionic liquids. RSC Advances 10 (22), pp. 12891 - 12899 (2020)
          4.
        
            Journal Article
            
           Enhanced antibacterial performance of ultrathin silver/platinum nanopatches by a sacrificial anode mechanism. Nanomedicine: Nanotechnology, Biology and Medicine 24, 102126 (2020)
          5.
        
            Journal Article
            
           Sputter Deposition of Highly Active Complex Solid Solution Electrocatalysts into an Ionic Liquid Library: Effect of Structure and Composition on Oxygen Reduction Activity. Nanoscale 12 (46), pp. 23570 - 23577 (2020)
          6.
        
            Journal Article
            
           Towards a paradigm shift in electrocatalysis using complex solid solution nanoparticles. ACS Energy Letters 4 (5), pp. 1206 - 1214 (2019)
          7.
        
            Journal Article
            
           Combinatorial Synthesis of Binary Nanoparticles in Ionic Liquids by Cosputtering and Mixing of Elemental Nanoparticles. ACS Combinatorial Science 21 (11), pp. 743 - 752 (2019)
          Poster (1)
8.
        
            Poster
            
           Study of the phase transition in multi-principle element alloy nanoparticles by in-situ heating TEM. Microscopy Conference (MC 2019), Berlin, Germany (2019)
          Preprint (1)
9.
        
            Preprint
            
           Elemental (im-)miscibility determines phase formation of multinary nanoparticles co-sputtered in ionic liquids. arXiv (2022)