Abstract:Here we summarized the nanoscale layered transition metal chalcogenide superconductors, mainly based on the experimental results. In transition-metal chalcogenides the interplay between strong electron-electron and electronphonon interactions produces a wide variety of instability ranging from charge density wave to superconducting state. The majority of bulk transition-metal dichalcogenides' Tcs are normally between 2 and 4 K. At present, superconducting transition-metal chalcogenides generally show low trans… Show more
“…20 Many techniques can produce better quality nanostructures but are oen more complicated and high cost (e.g. exfoliation and ion milling 21 ). Mechanochemistry, in this regard, offers a good alternative to lower production costs since it involves a single-step procedure (the milling) to react the initial reagents with a great difference in melting points, it does not use toxic catalytic materials as solvothermal routes do, and it can be easily scaled-up by bigger millers.…”
This work reports an unprecedented mechanochemistry synthesis of β-CoTe and its systematic characterization through X-ray powder diffraction (XRPD), transmission electron microscopy (TEM), and magnetometry techniques.
“…20 Many techniques can produce better quality nanostructures but are oen more complicated and high cost (e.g. exfoliation and ion milling 21 ). Mechanochemistry, in this regard, offers a good alternative to lower production costs since it involves a single-step procedure (the milling) to react the initial reagents with a great difference in melting points, it does not use toxic catalytic materials as solvothermal routes do, and it can be easily scaled-up by bigger millers.…”
This work reports an unprecedented mechanochemistry synthesis of β-CoTe and its systematic characterization through X-ray powder diffraction (XRPD), transmission electron microscopy (TEM), and magnetometry techniques.
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