Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Liquid crystal biosensing platform based on whispering gallery mode laser for Aβ42 detection.

Colloids and surfaces. B, Biointerfaces·2026
Same author

A universal 6iL/E4 culture system for deriving and maintaining embryonic stem cells across mammalian species.

Cell research·2026
Same author

Effects of Zn doping on the mechanical and thermoelectric properties of calcium silicate hydrate.

Journal of molecular modeling·2026
Same author

Historical roots of hospital-centred operational governance in China: a path dependence analysis and its implications for global health system reform.

BMJ global health·2026
Same author

Environmental Health Literacy Prevalence and Profiles among Shanghai Residents - Shanghai, China, 2020-2024.

China CDC weekly·2026
Same author

Evaluating deep coal rock gas fracturing sweet spot intervals using PSO-ELM algorithm and petrophysical logging data.

Scientific reports·2026

Related Experiment Video

Updated: Sep 29, 2025

Ohmic Contact Fabrication Using a Focused-ion Beam Technique and Electrical Characterization for Layer Semiconductor Nanostructures
08:12

Ohmic Contact Fabrication Using a Focused-ion Beam Technique and Electrical Characterization for Layer Semiconductor Nanostructures

Published on: December 5, 2015

12.4K

The first-principles study on Mo-doped monolayer ReS2.

He Li1, Ying Wang2, Guili Liu1

  • 1School of Architecture and Civil Engineering, Shenyang University of Technology, No.111 Shenliao Westroad Economic and Technological Development District, 110870, Shenyang, Liaoning, People's Republic of China.

Journal of Molecular Modeling
|March 19, 2022
PubMed
Summary

Molybdenum doping in rhenium disulfide (ReS2) monolayer reduces structural stability and band gap. This doping enhances electron-losing ability and shifts reflectivity peaks, impacting optical properties.

Keywords:
Band gapDopingElectronic structureOptical propertyReS2

More Related Videos

Preparation of Large-area Vertical 2D Crystal Hetero-structures Through the Sulfurization of Transition Metal Films for Device Fabrication
08:50

Preparation of Large-area Vertical 2D Crystal Hetero-structures Through the Sulfurization of Transition Metal Films for Device Fabrication

Published on: November 28, 2017

9.3K
A Standard and Reliable Method to Fabricate Two-Dimensional Nanoelectronics
07:12

A Standard and Reliable Method to Fabricate Two-Dimensional Nanoelectronics

Published on: August 28, 2018

9.8K

Related Experiment Videos

Last Updated: Sep 29, 2025

Ohmic Contact Fabrication Using a Focused-ion Beam Technique and Electrical Characterization for Layer Semiconductor Nanostructures
08:12

Ohmic Contact Fabrication Using a Focused-ion Beam Technique and Electrical Characterization for Layer Semiconductor Nanostructures

Published on: December 5, 2015

12.4K
Preparation of Large-area Vertical 2D Crystal Hetero-structures Through the Sulfurization of Transition Metal Films for Device Fabrication
08:50

Preparation of Large-area Vertical 2D Crystal Hetero-structures Through the Sulfurization of Transition Metal Films for Device Fabrication

Published on: November 28, 2017

9.3K
A Standard and Reliable Method to Fabricate Two-Dimensional Nanoelectronics
07:12

A Standard and Reliable Method to Fabricate Two-Dimensional Nanoelectronics

Published on: August 28, 2018

9.8K

Area of Science:

  • Materials Science
  • Condensed Matter Physics
  • Computational Chemistry

Background:

  • Monolayer rhenium disulfide (ReS2) is a 2D material with unique electronic and optical properties.
  • Doping is a common strategy to tune the properties of 2D materials.

Purpose of the Study:

  • To investigate the effects of Molybdenum (Mo) doping on the electronic structure and optical properties of monolayer ReS2.
  • To analyze the impact of varying Mo doping concentrations on system stability, band structure, and reflectivity.

Main Methods:

  • First-principles calculations were employed to model and analyze the Mo-doped ReS2 system.
  • Calculations included structural stability, bond length, charge density, band structure, density of states, photoabsorption, and reflectivity.

Main Results:

  • Mo doping decreases the structural stability of monolayer ReS2, with stability decreasing as doping concentration increases.
  • The band gap of ReS2 continuously decreases to 0 with increasing Mo doping concentration.
  • Doping enhances the electron-losing ability of atoms at doping sites, evidenced by increasing average charge population.

Conclusions:

  • Molybdenum doping significantly alters the electronic and optical properties of monolayer ReS2.
  • The observed changes suggest potential applications for tailored optoelectronic devices.
  • Further research could explore other dopants and their effects on ReS2 properties.