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Researchers have found a new method for making ultrathin metal-oxide sheets containing intricate wrinkle and crumple patterns. In a new study, the researchers show that the textured metal-oxide ...
Nanostructures based on carbon are promising materials for nanoelectronics. However, to be suitable, they would often need to be formed on non-metallic surfaces, which has been a challenge -- up ...
Nanostructures based on carbon are promising materials for nanoelectronics. However, to be suitable, they would often need to be formed on non-metallic surfaces, which has been a challenge -- up ...
The development of this new 3D nanoprinting method for metal oxides represents a significant advance in the field of nanofabrication. By enabling the creation of complex, multi-material 3D ...
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In a new study, researchers at the University of Minnesota Twin Cities discovered surprising magnetic behavior in one of the thinnest metallic oxide materials ever made. This could pave the way for ...
In new work, a research team has developed a general synthesis strategy by employing graphene oxide as a sacrificial template to prepare various 2D holey transition metal oxide (TMO) nanosheets, ...
Atomic wires of transition metal chalcogenides (TMCs) are nanostructures consisting of a transition metal and a group 16 element like sulfur, selenium, and tellurium.
Researchers led by Ryuhei Nakamura at the RIKEN Center for Sustainable Resource Science (CSRS) in Japan and The Earth-Life ...
Metallic oxide nanoparticles (MONPs) are one of the most highly utilized materials within nanotechnology. As a result, techniques are developed to design MONPs-based systems with limited expense and ...
Recent years has seen these materials expand from the conventional metal oxides seen in inorganic chemistry and now include materials which are multiferroic, i.e. they exhibit both ferromagnetic and ...
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