论文标题
相应堆积的范德华异质结构中的自发层间压缩
Spontaneous interlayer compression in commensurately stacked van der Waals heterostructures
论文作者
论文摘要
对分层的二维材料的兴趣,尤其是过渡金属二核苷的堆叠异质结构,这使得需要更好地了解堆叠引起的结构和电子变化。在这里,我们研究了理想化的异质结构的影响,与对应物散装金属二进制基因元素相比,与周期性相称的堆叠对结构,电子和振动性能。我们发现,与散装化合物相比,在具有不同chalcogen物种的异质结构中,层间间距具有很强的压缩。异质结构的这种压缩是由于层之间诱导的极化相互作用的强度增加而不是完全充电转移引起的。我们认为,这种效果是真实的,不是由于强加的性能,应该在结合不同果酱的异质结构中观察到。有趣的是,我们发现基于Ti的二甲化物的不合格堆叠导致电荷密度波声子模式的稳定,这在低温下在1T期不稳定。混合的TI-和ZR - 型盐结构仍然不稳定,但是电荷密度波或铁电不稳定性。
Interest in layered two dimensional materials, particularly stacked heterostructures of transition metal dichalcogenides, has led to the need for a better understanding of the structural and electronic changes induced by stacking. Here, we investigate the effects of idealized heterostructuring, with periodic commensurate stacking, on the structural, electronic, and vibrational properties, when compared to the counterpart bulk transition metal dichalcogenide. We find that in heterostructures with dissimilar chalcogen species there is a strong compression of the inter-layer spacing, compared to the bulk compounds. This compression of the heterostructure is caused by an increase in the strength of the induced polarization interaction between the layers, but not a full charge transfer. We argue that this effect is real, not due to the imposed commensurability, and should be observable in heterostructures combining different chalcogens. Interestingly, we find that incommensurate stacking of Ti-based dichalcogenides leads to the stabilization of the charge density wave phonon mode, which is unstable in the 1T phase at low temperature. Mixed Ti- and Zr-heterostructures are still unstable, but with a charge density wave or a ferroelectric instability.