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Desirable properties including increased electrical conductivity, improved mechanical properties, or magnetism for memory storage or information processing may be possible because of a theoretical met...
Thinning a material down to a single-atom thickness can dramatically change that material's physical properties. For example, graphene, the best-known 2D material, has unparalleled strength and electr...
Stenciling with atoms in two-dimensional materials possible     Stenciling  two-dimensional materials  possible       font style='font-size:12px;'> 2017/7/19
The possibilities for the new field of two-dimensional, one-atomic-layer-thick materials, including but not limited to graphene, appear almost limitless. In new research, Penn State material scientist...
Computers create recipe for two new magnetic materials     Computers  create recipe  two  new magnetic materials       font style='font-size:12px;'> 2017/4/27
Material scientists have predicted and built two new magnetic materials, atom-by-atom, using high-throughput computational models. The success marks a new era for the large-scale design of new magneti...
In a microscopic feat that resembled a high-wire circus act, Johns Hopkins researchers have coaxed DNA nanotubes to assemble themselves into bridge-like structures arched between two molecular landmar...
Concurrent growth of two phases in 2D space     KJMA theory  Concurrent growth  Screening       font style='font-size:12px;'> 2011/3/17
The kinetics of phase transformations has been studied within the framework of the Kolmogorov-Johnson-Mehl-Avrami (KJMA) theory. This theory accurately describes only the parallel growth of anisotropi...

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