A new rapid synthesis method allows efficient production of isotope-enriched MoO3 crystals with control over both Mo and O isotopic content for phonon engineering.
Nature562(7728), 557–562 (2018)
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MoOCl2 shows intrinsic plasmon-polariton canalization at the low-loss Drude crossing point, remaining directional over a broad window and tunable by thickness into the 4.5-6 μm range.
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Rapid synthesis of dual-element isotope-enriched alpha-MoO3 crystals by reactive vapor transport
A new rapid synthesis method allows efficient production of isotope-enriched MoO3 crystals with control over both Mo and O isotopic content for phonon engineering.
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Intrinsic plasmon canalization in the biaxial van der Waals crystal MoOCl$_2$
MoOCl2 shows intrinsic plasmon-polariton canalization at the low-loss Drude crossing point, remaining directional over a broad window and tunable by thickness into the 4.5-6 μm range.