Molybdenum Diselenide

Molybdenum diselenide (MoSe2) is a layered transition-metal dichalcogenide and two-dimensional semiconductor whose thickness-dependent electronic properties make it important in materials engineering. Each layer consists of molybdenum and selenium atoms, while weak van der Waals forces between layers enable mechanical or liquid exfoliation into ultrathin sheets. Reducing the material to a monolayer can alter its band structure, producing a direct band gap and strong light–matter interactions that support efficient charge and exciton generation. These properties make MoSe2 useful for research on field-effect transistors, photodetectors, sensors, flexible electronics, and other nanoscale devices.

Molybdenum Diselenide - Related Videos

Research

JoVE Journal - Chemistry

Temperature-programmed Deoxygenation of Acetic Acid on Molybdenum Carbide Catalysts

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Cited by 1 •

2017

Presented here is a protocol for the operation of a micro-scale temperature-programmed reactor for evaluating the catalytic performance of molybdenum carbide during acetic acid deoxygenation.

Research

JoVE Journal - Engineering
Free Sample

Using Laser Scanning Microscopy to Determine Electromigration in Molybdenum Disilicide

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2025

Here, we describe a workflow using laser scanning microscopy to determine the volume electromigrated through a metal line under test. By varying different experimental variables, a multitude of information about electromigration can be acquired. In this work, the length of the onset of electromigration is determined.

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

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Cited by 10 •

2015

We describe the approaches for the device fabrication and electrical characterization of molybdenum diselenide (MoSe2) layer semiconductor nanostructures with different thicknesses. In addition, the fabrication of ohmic contacts for MoSe2-layer nanocrystals by the focused-ion beam deposition method using platinum (Pt) as a contact metal is described.

Construction and Evaluation of a Murine Calvarial Osteolysis Model by Exposure to CoCrMo Particles in Aseptic Loosening

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Cited by 9 •

2018

This manuscript describes a murine calvarial osteolysis model by exposure to CoCrMo particles, which constitutes an ideal animal model for assessing the interactions between wear particles and various cells in aseptic loosening.

Making Record-efficiency SnS Solar Cells by Thermal Evaporation and Atomic Layer Deposition

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Cited by 30 •

2015

Tin sulfide (SnS) is a candidate material for Earth-abundant, non-toxic solar cells. Here, we demonstrate the fabrication procedure of the SnS solar cells employing atomic layer deposition, which yields 4.36% certified power conversion efficiency, and thermal evaporation which yields 3.88%.

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