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- W3103171052 abstract "We report the growth of high quality Bi2−xSbxTe3−ySey ultrathin nanoplates (BSTS-NPs) on an electrically insulating fluorophlogopite mica substrate using a catalyst-free vapor solid method. Under an optimized pressure and suitable Ar gas flow rate, we control the thickness, the size, and the composition of the BSTS-NPs. Raman spectra showing systematic change indicate that the thicknesses and compositions of the BSTS-NPs are indeed accurately controlled. Electrical transport demonstrates a robust Dirac cone carrier transport in the BSTS-NPs. Since the BSTS-NPs provide superior dominant surface transport of the tunable Dirac cone surface states with negligible contribution of the conduction of the bulk states, the BSTS-NPs provide an ideal platform to explore intrinsic physical phenomena as well as technological applications of 3-dimensional topological insulators in the future." @default.
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- W3103171052 date "2014-08-11" @default.
- W3103171052 modified "2023-09-23" @default.
- W3103171052 title "Van der Waals epitaxial growth of topological insulator Bi2−<i>x</i>Sb<i>x</i>Te3−<i>y</i>Se<i>y</i> ultrathin nanoplate on electrically insulating fluorophlogopite mica" @default.
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- W3103171052 doi "https://doi.org/10.1063/1.4892576" @default.
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