Published in final edited form as: ACS Nano. 2015 July 28; 9(7): 7352–7359. doi:10.1021/acsnano.5b02369.Molybdenum disulfide (MoS2) flakes can grow beyond the edge of an underlying substrate into a planar freestanding crystal. When the substrate edge is in the form of an aperture, reagent-limited nucleation followed by edge growth facilitate direct and selective growth of freestanding MoS2 membranes. We have found conditions under which MoS2 grows preferentially across micrometer-scale prefabricated solid-state apertures in silicon nitride membranes, resulting in sealed membranes that are one to a few atomic layers thick. We have investigated the structure and purity of our membranes by a combination of atomic-resolution transmission electr...
Copyright © 2019 The Authors,We report wafer-scale growth of atomically thin, three-dimensional (3D)...
Synthesis of large-area atomically thin transition metal dichalcogenides (TMDs) on diverse substrate...
For continual scaling in microelectronics, new processes for precise high volume fabrication are req...
Among the different developed solid-state nanopores, nanopores constructed in a monolayer of molybde...
Biologically inspired solid-state nanopores are artificial openings or apertures in thin membranes s...
Ultrathin nanopore membranes based on 2D materials have demonstrated ultimate resolution toward DNA ...
Ultrathin nanopore membranes based on 2D materials have demonstrated ultimate resolution toward DNA ...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
Nanopores are impedance based bio-sensors. The principle of nanopore sensors is analogous to that of...
Two-dimensional nanoporous membranes have received attention as catalysts for energy generation and ...
Advances in nanotechnology rely on the capability to fabricate nanometer scale structures and device...
2018Using a simple dry transfer process, I construct and characterize three nanoscale MoS2 devices w...
The combination of extremely high stiffness and bending flexibility with tunable electrical and opti...
Monolayer transition metal dichalcogenides are materials with an atomic structure complementary to g...
Molybdenum sulfide films were grown by atomic layer deposition on silicon and fused silica substrate...
Copyright © 2019 The Authors,We report wafer-scale growth of atomically thin, three-dimensional (3D)...
Synthesis of large-area atomically thin transition metal dichalcogenides (TMDs) on diverse substrate...
For continual scaling in microelectronics, new processes for precise high volume fabrication are req...
Among the different developed solid-state nanopores, nanopores constructed in a monolayer of molybde...
Biologically inspired solid-state nanopores are artificial openings or apertures in thin membranes s...
Ultrathin nanopore membranes based on 2D materials have demonstrated ultimate resolution toward DNA ...
Ultrathin nanopore membranes based on 2D materials have demonstrated ultimate resolution toward DNA ...
Extended abstract of a paper presented at Microscopy and Microanalysis 2012 in Phoenix, Arizona, USA...
Nanopores are impedance based bio-sensors. The principle of nanopore sensors is analogous to that of...
Two-dimensional nanoporous membranes have received attention as catalysts for energy generation and ...
Advances in nanotechnology rely on the capability to fabricate nanometer scale structures and device...
2018Using a simple dry transfer process, I construct and characterize three nanoscale MoS2 devices w...
The combination of extremely high stiffness and bending flexibility with tunable electrical and opti...
Monolayer transition metal dichalcogenides are materials with an atomic structure complementary to g...
Molybdenum sulfide films were grown by atomic layer deposition on silicon and fused silica substrate...
Copyright © 2019 The Authors,We report wafer-scale growth of atomically thin, three-dimensional (3D)...
Synthesis of large-area atomically thin transition metal dichalcogenides (TMDs) on diverse substrate...
For continual scaling in microelectronics, new processes for precise high volume fabrication are req...