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2D transition metal Dichalcogenides: Synthesis methods and their pivotal role in Photo, Piezo, and photo-piezocatalytic processes
Over the past two decades, the field of two-dimensional (2D) layered materials has
witnessed a remarkable advancement, owing to the discovery of the exceptional properties …
witnessed a remarkable advancement, owing to the discovery of the exceptional properties …
Machine learning and artificial neural network accelerated computational discoveries in materials science
Artificial intelligence (AI) has been referred to as the “fourth paradigm of science,” and as
part of a coherent toolbox of data‐driven approaches, machine learning (ML) dramatically …
part of a coherent toolbox of data‐driven approaches, machine learning (ML) dramatically …
[HTML][HTML] Photothermal phenomenon: Extended ideas for thermophysical properties characterization
The photothermal phenomenon involves material photon heating in the form of continuous
waves, modulated waves, or pulses. The resulting temperature rise carries very rich …
waves, modulated waves, or pulses. The resulting temperature rise carries very rich …
Dielectric material technologies for 2-D semiconductor transistor scaling
The 2-D semiconductors have been recognized as promising channel materials for the
ultimately scaled transistor technologies beyond silicon. An essential technology enabler for …
ultimately scaled transistor technologies beyond silicon. An essential technology enabler for …
Thermal transport in 2D materials
In recent decades, two-dimensional materials (2D) such as graphene, black and blue
phosphorenes, transition metal dichalcogenides (eg, WS2 and MoS2), and h-BN have …
phosphorenes, transition metal dichalcogenides (eg, WS2 and MoS2), and h-BN have …
Observing grain boundary-induced phonons mean free path in highly aligned SWCNT bundles by low-momentum phonon scattering
Due to their nanoscale scattering cross section, single-walled carbon nanotubes (SWCNTs)
have never been reported for crystallite size or similar characteristics. Here, we characterize …
have never been reported for crystallite size or similar characteristics. Here, we characterize …
Effect of temperature on Raman intensity of nm-thick WS 2: Combined effects of resonance Raman, optical properties, and interface optical interference
Temperature dependent Raman intensity of 2D materials features very rich information
about the material's electronic structure, optical properties, and nm-level interface spacing …
about the material's electronic structure, optical properties, and nm-level interface spacing …
Plasmon-enhanced photoresponse in Ag-WS2/Si heterojunction
Two-dimensional layered materials offer an exceptional platform for production of high-
performance optoelectronic devices owing to inimitable opto-electronic characteristics …
performance optoelectronic devices owing to inimitable opto-electronic characteristics …
Distinguishing optical and acoustic phonon temperatures and their energy coupling factor under photon excitation in nm 2D materials
Under photon excitation, 2D materials experience cascading energy transfer from electrons
to optical phonons (OPs) and acoustic phonons (APs). Despite few modeling works, it …
to optical phonons (OPs) and acoustic phonons (APs). Despite few modeling works, it …
Frequency-domain energy transport state-resolved Raman for measuring the thermal conductivity of suspended nm-thick MoSe2
Temperature-dependent Raman properties calibration and laser absorption evaluation are
two significant sources of error in measurement of nm-thick materials thermal conductivity …
two significant sources of error in measurement of nm-thick materials thermal conductivity …