The thermoelectric figures of merit of pristine two-dimensional materials are predicted to be significantly less than unity, making them uncompetitive as thermoelectric materials. Here we elucidate a new strategy that overcomes this limitation by creating multi-layer nanoribbons of two different materials and allowing thermal and electrical currents to flow perpendicular to their planes. To demonstrate this enhancement of thermoelectric efficiency ZT, we analyse the thermoelectric performance of monolayer molybdenum disulphide (MoS2) sandwiched between two graphene monolayers and demonstrate that the cross-plane (CP) ZT is significantly enhanced compared with the pristine parent materials. For the parent monolayer of MoS2, we find that ZT c...
The discovery of graphene, made of single-layer carbon atoms, defines the starting point in the rese...
We investigate the thermal conductivity in the armchair and zigzag MoS2 nanoribbons, by combining th...
The isolation of single- to few-layer transition metal dichalcogenides opens new directions in the a...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
We investigated the thermoelectric (TE) properties of the MoS2 monolayer-graphene heterostructure wh...
In many device architectures based on 2D materials, a major part of the heat generated in hot-spots ...
Graphene has many superlative thermal, electrical and mechanical properties. However, the thermoelec...
Abstract We examine the potential of the low-dimensional material MoS2 for the efficient conversion...
Over the past few years there has been a growing interest in layered two dimensional (2D) materials ...
We demonstrate a graphene-MoS2 architecture integrating multiple field-effect transistors (FETs), an...
Layering two-dimensional van der Waals materials provides a high degree of control over atomic place...
Heterogeneous integration of nanomaterials has enabled advanced electronics and photonics applicatio...
Van der Waals (vdW) heterojunctions between graphene and transition metal dichalcogenides (TMDs) are...
One key to improve the performance of advanced optoelectronic devices and energy harvesting in graph...
Two-dimensional van der Waals materials have been a subject of intense research interest in recent y...
The discovery of graphene, made of single-layer carbon atoms, defines the starting point in the rese...
We investigate the thermal conductivity in the armchair and zigzag MoS2 nanoribbons, by combining th...
The isolation of single- to few-layer transition metal dichalcogenides opens new directions in the a...
The thermal conductivity of the graphene-encapsulated MoS<sub>2</sub> (graphene/MoS<sub>2</sub>/grap...
We investigated the thermoelectric (TE) properties of the MoS2 monolayer-graphene heterostructure wh...
In many device architectures based on 2D materials, a major part of the heat generated in hot-spots ...
Graphene has many superlative thermal, electrical and mechanical properties. However, the thermoelec...
Abstract We examine the potential of the low-dimensional material MoS2 for the efficient conversion...
Over the past few years there has been a growing interest in layered two dimensional (2D) materials ...
We demonstrate a graphene-MoS2 architecture integrating multiple field-effect transistors (FETs), an...
Layering two-dimensional van der Waals materials provides a high degree of control over atomic place...
Heterogeneous integration of nanomaterials has enabled advanced electronics and photonics applicatio...
Van der Waals (vdW) heterojunctions between graphene and transition metal dichalcogenides (TMDs) are...
One key to improve the performance of advanced optoelectronic devices and energy harvesting in graph...
Two-dimensional van der Waals materials have been a subject of intense research interest in recent y...
The discovery of graphene, made of single-layer carbon atoms, defines the starting point in the rese...
We investigate the thermal conductivity in the armchair and zigzag MoS2 nanoribbons, by combining th...
The isolation of single- to few-layer transition metal dichalcogenides opens new directions in the a...