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Transformation of bulk alloys to oxide nanowires
by
Benson, Jim
, Lei, Danni
, Yushin, Gleb
, Magasinski, Alexandre
, Berdichevsky, Gene
in
Alcohols
/ Alloys
/ Aluminum
/ Aluminum base alloys
/ Aluminum oxide
/ Catalysts
/ Chemical reactions
/ Chemistry
/ Coordination compounds
/ External stimuli
/ Functional materials
/ High temperature
/ Lithium
/ Lithium batteries
/ Lithium-ion batteries
/ Magnesium
/ Magnesium base alloys
/ Mechanical properties
/ Metal oxides
/ Nanostructure
/ Nanotechnology
/ Nanowires
/ Oxides
/ Rechargeable batteries
/ Safety
/ Separators
/ Solvents
/ Temperature effects
/ Transformations
2017
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Transformation of bulk alloys to oxide nanowires
by
Benson, Jim
, Lei, Danni
, Yushin, Gleb
, Magasinski, Alexandre
, Berdichevsky, Gene
in
Alcohols
/ Alloys
/ Aluminum
/ Aluminum base alloys
/ Aluminum oxide
/ Catalysts
/ Chemical reactions
/ Chemistry
/ Coordination compounds
/ External stimuli
/ Functional materials
/ High temperature
/ Lithium
/ Lithium batteries
/ Lithium-ion batteries
/ Magnesium
/ Magnesium base alloys
/ Mechanical properties
/ Metal oxides
/ Nanostructure
/ Nanotechnology
/ Nanowires
/ Oxides
/ Rechargeable batteries
/ Safety
/ Separators
/ Solvents
/ Temperature effects
/ Transformations
2017
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Transformation of bulk alloys to oxide nanowires
by
Benson, Jim
, Lei, Danni
, Yushin, Gleb
, Magasinski, Alexandre
, Berdichevsky, Gene
in
Alcohols
/ Alloys
/ Aluminum
/ Aluminum base alloys
/ Aluminum oxide
/ Catalysts
/ Chemical reactions
/ Chemistry
/ Coordination compounds
/ External stimuli
/ Functional materials
/ High temperature
/ Lithium
/ Lithium batteries
/ Lithium-ion batteries
/ Magnesium
/ Magnesium base alloys
/ Mechanical properties
/ Metal oxides
/ Nanostructure
/ Nanotechnology
/ Nanowires
/ Oxides
/ Rechargeable batteries
/ Safety
/ Separators
/ Solvents
/ Temperature effects
/ Transformations
2017
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Journal Article
Transformation of bulk alloys to oxide nanowires
2017
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Overview
One dimensional (1D) nanostructures offer prospects for enhancing the electrical, thermal, and mechanical properties of a broad range of functional materials and composites, but their synthesis methods are typically elaborate and expensive. We demonstrate a direct transformation of bulk materials into nanowires under ambient conditions without the use of catalysts or any external stimuli. The nanowires form via minimization of strain energy at the boundary of a chemical reaction front. We show the transformation of multimicrometer-sized particles of aluminum or magnesium alloys into alkoxide nanowires of tunable dimensions, which are converted into oxide nanowires upon heating in air. Fabricated separators based on aluminum oxide nanowires enhanced the safety and rate capabilities of lithium-ion batteries. The reported approach allows ultralow-cost scalable synthesis of 1D materials and membranes.
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