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Conversion of Mg-Li Bimetallic Alloys to Magnesium Alkoxide and Magnesium Oxide Ceramic Nanowires
Authors:Shunrui Luo  Dr Kostiantyn Turcheniuk  Ah-Young Song  Aashray Narla  Doyoub Kim  Dr Alexandre Magasinsky  Prof Gleb Yushin
Institution:1. School of Chemistry and Chemical Engineering, Chongqing University, Chongqing, 40044 China;2. School of Materials Science & Engineering, Georgia Institute of Technology, Atlanta, GA, 30332 USA
Abstract:Technologically important composites with enhanced thermal and mechanical properties rely on the reinforcement by the high specific strength ceramic nanofibers or nanowires (NWs) with high aspect ratios. However, conventional synthesis routes to produce such ceramic NWs have prohibitively high cost. Now, direct transformation of bulk Mg-Li alloys into Mg alkoxide NWs is demonstrated without the use of catalysts, templates, expensive or toxic chemicals, or any external stimuli. This mechanism proceeds through the minimization of strain energy at the boundary of phase transformation front leading to the formation of ultra-long NWs with tunable dimensions. Such alkoxide NWs can be easily converted in air into ceramic MgO NWs with similar dimensions. The impact of the alloy grain size and Li content, synthesis temperature, inductive and steric effects of alkoxide groups on the diameter, length, composition, ductility, and oxidation of the produced NWs is discussed.
Keywords:Ablegieren  Keramiken  Metall-organische Gerüste  Nanokabel  Nanofasern
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