Self-organized twist-heterostructures via aligned van der Waals epitaxy and solid-state transformations.

Sutter, Peter; Ibragimova, Rina; Komsa, Hannu-Pekka; Parkinson, Bruce A; Sutter, Eli · Nat Commun · 2019

basic_science · Level V

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Abstract

Vertical van der Waals (vdW) heterostructures of 2D crystals with defined interlayer twist are of interest for band-structure engineering via twist moiré superlattice potentials. To date, twist-heterostructures have been realized by micromechanical stacking. Direct synthesis is hindered by the tendency toward equilibrium stacking without interlayer twist. Here, we demonstrate that growing a 2D crystal with fixed azimuthal alignment to the substrate followed by transformation of this intermediate enables a potentially scalable synthesis of twisted heterostructures. Microscopy during growth of ultrathin orthorhombic SnS on trigonal SnS<sub>2</sub> shows that vdW epitaxy yields azimuthal order even for non-isotypic 2D crystals. Excess sulfur drives a spontaneous transformation of the few-layer SnS to SnS<sub>2</sub>, whose orientation - rotated 30° against the underlying SnS<sub>2</sub> crystal - is defined by the SnS intermediate rather than the substrate. Preferential nucleation of additional SnS on such twisted domains repeats the process, promising the realization of complex twisted stacks by bottom-up synthesis.