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2012
In this chapter we present MD simulations of martensitic phase transformations in 2D Lennard–Jones (L–J) crystals. A binary L–J potential is used to describe a square-to-hexagonal transformation by shear-and-shuffle processes. The model material is capable of the complex thermo-mechanical coupling present in SMA—pseudo-plasticity, pseudo-elasticity and
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In this chapter we present MD simulations of martensitic phase transformations in 2D Lennard–Jones (L–J) crystals. A binary L–J potential is used to describe a square-to-hexagonal transformation by shear-and-shuffle processes. The model material is capable of the complex thermo-mechanical coupling present in SMA—pseudo-plasticity, pseudo-elasticity and
openaire +1 more source
Intercalation in 2D materials and in situ studies
Nature Reviews ChemistryRuijie Yang +11 more
semanticscholar +1 more source
ECS Meeting Abstracts
2D materials are an exciting topic with a wide variety of applications in many research fields, from optoelectronics, photonics or qubit devices to catalysis. So far, these layered nanoscopic materials have been obtained by different procedures. In top-down approaches, from simple mechanical "Scotch tape" exfoliation to liquid exfoliation to break ...
openaire +1 more source
2D materials are an exciting topic with a wide variety of applications in many research fields, from optoelectronics, photonics or qubit devices to catalysis. So far, these layered nanoscopic materials have been obtained by different procedures. In top-down approaches, from simple mechanical "Scotch tape" exfoliation to liquid exfoliation to break ...
openaire +1 more source
Materials design for bone-tissue engineering
Nature Reviews Materials, 2020Mani Diba, Antonios G Mikos
exaly
Materials for solar-powered water evaporation
Nature Reviews Materials, 2020Fei Zhao, Youhong Guo, Xingyi Zhou
exaly
Materials for next-generation desalination and water purification membranes
Nature Reviews Materials, 2016Jay R Werber +2 more
exaly

