Developing selective and coherent polymorphic crystals at the nanoscale offers a novel strategy for designing integrated architectures for photonic and optoelectronic applications such as metasurfaces, optical gratings, photodetectors, and image sensors. Here, a direct optical writing approach is demonstrated to deterministically create polymorphic 2D materials by locally inducing metallic 1T′-MoTe2 on the semiconducting 2H-MoTe2 host layer. In the polymorphic-engineered MoTe2, 2H- and 1T′- crystalline phases exhibit strong optical contrast from near-infrared to telecom-band ranges (1–1.5 µm), due to the change in the band structure and increase in surface roughness. Sevenfold enhancement of third harmonic generation intensity is realized w...
Two-dimensional (2D) materials, featuring distinctive electronic and optical properties and dangling...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Among the Mo- and W-based two-dimensional (2D) transition metal dichalcogenides, MoTe2 is particular...
Developing selective and coherent polymorphic crystals at the nanoscale offers a novel strategy for ...
The monoclinic-phase 1T′ MoTe2 crystal exhibits inversion symmetry as an anisotropic semi-metal, dic...
Two-dimensional (2D) atomic crystalline materials have attracted the scientific community owing to t...
MasterCrystal polymorphism in atomically thin transition-metal dichalcogenides often stabilizes the ...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
The polymorphism of MoTe2 can be used to realize planar metallic/semiconducting homojunctions in 2D ...
The discovery and control of new phases of matter are a central endeavor in materials research. Phas...
The development of complex electronics based on two-dimensional (2D) materials will require the inte...
In this thesis the layered, two-dimensional material MoTe2 is examined experimentally for its optoel...
Among various transition metal dichalcogenides, MoTe2 has drawn attention due to its capability of r...
Two-dimensional (2D) materials, featuring distinctive electronic and optical properties and dangling...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Among the Mo- and W-based two-dimensional (2D) transition metal dichalcogenides, MoTe2 is particular...
Developing selective and coherent polymorphic crystals at the nanoscale offers a novel strategy for ...
The monoclinic-phase 1T′ MoTe2 crystal exhibits inversion symmetry as an anisotropic semi-metal, dic...
Two-dimensional (2D) atomic crystalline materials have attracted the scientific community owing to t...
MasterCrystal polymorphism in atomically thin transition-metal dichalcogenides often stabilizes the ...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
Crystal polymorphism selectively stabilizes the electronic phase of atomically thin transition-metal...
The polymorphism of MoTe2 can be used to realize planar metallic/semiconducting homojunctions in 2D ...
The discovery and control of new phases of matter are a central endeavor in materials research. Phas...
The development of complex electronics based on two-dimensional (2D) materials will require the inte...
In this thesis the layered, two-dimensional material MoTe2 is examined experimentally for its optoel...
Among various transition metal dichalcogenides, MoTe2 has drawn attention due to its capability of r...
Two-dimensional (2D) materials, featuring distinctive electronic and optical properties and dangling...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Among the Mo- and W-based two-dimensional (2D) transition metal dichalcogenides, MoTe2 is particular...