The properties of a material can be engineered by manipulating its atomic and chemical architecture. Nanoglasses which have been recently invented and comprise nanosized glassy particles separated by amorphous interfaces, have shown promising properties. A potential way to exploit the structural benefits of nanoglasses and of nanocrystalline materials is to optimize the composition to obtain crystals forming within the glassy particles. Here, a metastable Fe‐10 at% Sc nanoglass is synthesized. A complex hierarchical microstructure is evidenced experimentally at the atomic scale. This bulk material comprises grains of a Fe$_{90}$Sc$_{10}$ amorphous matrix separated by an amorphous interfacial network enriched and likely stabilized by hydroge...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
One of the central themes in the amorphous materials research is to understand the nanoscale structu...
Amorphous ceramics with superb strength and irradiation tolerance are promising candidate materials ...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are a new class of noncrystalline solids. They differ from today’s glasses due to their ...
Strain localization during plastic deformation drastically reduces the shear band stability in metal...
Nanostructured metals are materials with feature sizes below 100 nm. These features can take various...
Crystalline metals generally exhibit good deformability but low strength and poor irradiation tolera...
Crystalline metals generally exhibit good deformability but low strength and poor irradiation tolera...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are solids consisting of nanometer-sized glassy regions connected by interfaces having a...
Nanoglasses are non-crystalline solids whose internal structure is characterized by fluctuations of ...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are non-crystalline solids whose internal structure is characterized by fluctuations of ...
Nanoglasses are solids consisting of nanometer-sized glassy regions connected by interfaces having a...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
One of the central themes in the amorphous materials research is to understand the nanoscale structu...
Amorphous ceramics with superb strength and irradiation tolerance are promising candidate materials ...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are a new class of noncrystalline solids. They differ from today’s glasses due to their ...
Strain localization during plastic deformation drastically reduces the shear band stability in metal...
Nanostructured metals are materials with feature sizes below 100 nm. These features can take various...
Crystalline metals generally exhibit good deformability but low strength and poor irradiation tolera...
Crystalline metals generally exhibit good deformability but low strength and poor irradiation tolera...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are solids consisting of nanometer-sized glassy regions connected by interfaces having a...
Nanoglasses are non-crystalline solids whose internal structure is characterized by fluctuations of ...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
Nanoglasses are non-crystalline solids whose internal structure is characterized by fluctuations of ...
Nanoglasses are solids consisting of nanometer-sized glassy regions connected by interfaces having a...
Bulk metallic glasses (BMGs) have attracted wide interest, but their successful application is hinde...
One of the central themes in the amorphous materials research is to understand the nanoscale structu...
Amorphous ceramics with superb strength and irradiation tolerance are promising candidate materials ...