An excellent triethylamine (TEA) sensor based on unique hierarchical MoS2/ZnO composites composed of porous microspheres and nanosheets

X Xu, S Wang, W Liu, Y Chen, S Ma, P Yun - Sensors and Actuators B …, 2021 - Elsevier
A convenient two-step hydrothermal method was used to prepare unique hierarchical MoS
2/ZnO composites composed of porous microspheres and nanosheets. The gas sensing …

Construction of bilayer PdSe2 on epitaxial graphene

E Li, D Wang, P Fan, R Zhang, YY Zhang, G Li, J Mao… - Nano Research, 2018 - Springer
Abstract Two-dimensional (2D) materials have received significant attention due to their
unique physical properties and potential applications in electronics and optoelectronics …

[HTML][HTML] Tunable band gaps and optical absorption properties of bent MoS2 nanoribbons

H Tang, B Neupane, S Neupane, S Ruan, NK Nepal… - Scientific Reports, 2022 - nature.com
The large tunability of band gaps and optical absorptions of armchair MoS2 nanoribbons of
different widths under bending is studied using density functional theory and many-body …

Tuning Electronic and Magnetic Properties of Two-Dimensional Ferromagnetic Semiconductor CrI3 through Adsorption of Benzene

M Lu, Q Yao, Q Li, C Xiao, C Huang… - The Journal of Physical …, 2020 - ACS Publications
Two-dimensional (2D) ferromagnetic (FM) semiconductor chromium triiodide (CrI3) has
attracted much attention because of its long-range two-dimensional (2D) FM order and …

Nanoribbon edges of transition-metal dichalcogenides: Stability and electronic properties

D Davelou, G Kopidakis, E Kaxiras, IN Remediakis - Physical Review B, 2017 - APS
Nanoribbons of molybdenum disulfide (MoS 2) are interesting one-dimensional (1D)
nanostructures with intriguing electronic properties, consisting of a semiconducting bulk …

Electrical properties and spintronic application of carbon phosphide nanoribbons with edge functionalization

L Cao, X Li, Y Li, G Zhou - Journal of Materials Chemistry C, 2020 - pubs.rsc.org
Edge-functionalization is an important method for the band engineering of nanoribbons
(NRs). Implementing the first principle calculations, we investigate the electronic band …

Electronic transport in disordered nanoribbons

E Ridolfi, LRF Lima, ER Mucciolo, CH Lewenkopf - Physical Review B, 2017 - APS
We study the electronic structure and transport properties of zigzag and armchair monolayer
molybdenum disulfide nanoribbons using an 11-band tight-binding model that accurately …

On the synthesis of morphology‐controlled transition metal dichalcogenides via chemical vapor deposition for electrochemical hydrogen generation

R Sharma, KR Sahoo, PK Rastogi… - physica status solidi …, 2019 - Wiley Online Library
Shape‐engineered atomically thin transition metal dichalcogenide (TMD) crystals are highly
intriguing systems with regard to both fundamental and applied science. Herein, a chemical …

The indirect–direct band gap tuning in armchair MoS2 nanoribbon by edge passivation

R Wang, X Zhou, X Xu, J Hu, J Pan - Journal of Physics D …, 2017 - iopscience.iop.org
We performed density functional theory calculations to investigate the electronic structure of
armchair MoS 2 nanoribbons (AMoS 2 NRs) with and without passivation. The AMoS 2 NRs …

Transition-metal doping induces the transition of electronic and magnetic properties in armchair MoS 2 nanoribbons

J Pan, R Wang, X Zhou, J Zhong, X Xu… - Physical Chemistry …, 2017 - pubs.rsc.org
The electronic structure, magnetic properties and stability of transition-metal (TM) doped
armchair MoS2 nanoribbons (AMoS2NRs) with full hydrogen passivation have been …