Tailoring the specific stacking sequence (polytypes) of layered materials represents a powerful strategy to identify and design novel physical properties. While nanostructures built upon transition-metal dichalcogenides (TMDs) with either the 2H or 3R crystalline phases have been routinely studied, knowledge of TMD nanomaterials based on mixed 2H/3R polytypes is far more limited. In this work, mixed 2H/3R free-standing WS2 nanostructures displaying a flower-like configuration are fingerprinted by means of state-of-the-art transmission electron microscopy. Their rich variety of shape-morphology configurations is correlated with relevant local electronic properties such as edge, surface, and bulk plasmons. Machine learning is deployed to esta...
University of Minnesota Ph.D. dissertation. December 2019. Major: Chemical Engineering. Advisor: Kar...
Van der Waals heterostructures form a unique class of layered artificial solids in which physical pr...
Atomically thin transition metal dichalcogenides (TMDs) have distinct opto-electronic properties inc...
Tailoring the specific stacking sequence (polytypes) of layered materials represents a powerful stra...
Tailoring the specific stacking sequence (polytypes) of layered materials represents a powerful stra...
The family of transitionmetal dichalcogenides offer a unique platformfor electronic and optical tuna...
Phase engineering through chemical modification can significantly alter the properties of transition...
Phase engineering through chemical modification can significantly alter the properties of transition...
Phase engineering through chemical modification can significantly alter the properties of transition...
Atomically thin tungsten disulfide (WS2), a structural analogue to MoS2, has attracted great Interes...
Liquid-phase exfoliation of layered materials offers a large-scale approach toward the synthesis of ...
Liquid-phase exfoliation of layered materials offers a large-scale approach toward the synthesis of ...
International audienceWhile 1T′ phase-pure MX2 (M = Mo, W; X = Se, Te) have recently been reported t...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
Atomically thin transition metal dichalcogenides (TMDCs) are promising candidates for implementation...
University of Minnesota Ph.D. dissertation. December 2019. Major: Chemical Engineering. Advisor: Kar...
Van der Waals heterostructures form a unique class of layered artificial solids in which physical pr...
Atomically thin transition metal dichalcogenides (TMDs) have distinct opto-electronic properties inc...
Tailoring the specific stacking sequence (polytypes) of layered materials represents a powerful stra...
Tailoring the specific stacking sequence (polytypes) of layered materials represents a powerful stra...
The family of transitionmetal dichalcogenides offer a unique platformfor electronic and optical tuna...
Phase engineering through chemical modification can significantly alter the properties of transition...
Phase engineering through chemical modification can significantly alter the properties of transition...
Phase engineering through chemical modification can significantly alter the properties of transition...
Atomically thin tungsten disulfide (WS2), a structural analogue to MoS2, has attracted great Interes...
Liquid-phase exfoliation of layered materials offers a large-scale approach toward the synthesis of ...
Liquid-phase exfoliation of layered materials offers a large-scale approach toward the synthesis of ...
International audienceWhile 1T′ phase-pure MX2 (M = Mo, W; X = Se, Te) have recently been reported t...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
Atomically thin transition metal dichalcogenides (TMDCs) are promising candidates for implementation...
University of Minnesota Ph.D. dissertation. December 2019. Major: Chemical Engineering. Advisor: Kar...
Van der Waals heterostructures form a unique class of layered artificial solids in which physical pr...
Atomically thin transition metal dichalcogenides (TMDs) have distinct opto-electronic properties inc...