Transitional metal ditelluride WTe 2 has been extensively studied owing to its intriguing physical properties like nonsaturating positive magnetoresistance and being possibly a type-II Weyl semimetal. While surging research activities were devoted to the understanding of its bulk properties, it remains a substantial challenge to explore the pristine physics in atomically thin WTe 2 . Here, we report a successful synthesis of mono- to few-layer WTe 2 via chemical vapor deposition. Using atomically thin WTe 2 nanosheets, we discover a previously inaccessible ambipolar behavior that enables the tunability of magnetoconductance of few-layer WTe 2 from weak antilocalization to weak localization, revealing a strong electrical field modulation of the spin–orbit interaction under perpendicular magnetic field. These appealing physical properties unveiled in this study clearly identify WTe 2 as a promising platform for exotic electronic and spintronic device applications.
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Zhang et al. (2016) studied this question.
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