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Control of work function of MoS2 with ferroelectric polarization in  honeycomb-like heterostructure: Applied Physics Letters: Vol 110, No 19
Control of work function of MoS2 with ferroelectric polarization in honeycomb-like heterostructure: Applied Physics Letters: Vol 110, No 19

Defect Coupling and Sub-Angstrom Structural Distortions in W1–xMoxS2  Monolayers | Nano Letters
Defect Coupling and Sub-Angstrom Structural Distortions in W1–xMoxS2 Monolayers | Nano Letters

Thickness dependence of hydrogen-induced phase transition in MoTe_{2}
Thickness dependence of hydrogen-induced phase transition in MoTe_{2}

Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters
Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters

Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters
Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters

High-Mobility MoS2 Directly Grown on Polymer Substrate with  Kinetics-Controlled Metal–Organic Chemical Vapor Deposition | ACS Applied  Electronic Materials
High-Mobility MoS2 Directly Grown on Polymer Substrate with Kinetics-Controlled Metal–Organic Chemical Vapor Deposition | ACS Applied Electronic Materials

Anisotropic Ordering in 1T′ Molybdenum and Tungsten Ditelluride Layers  Alloyed with Sulfur and Selenium | ACS Nano
Anisotropic Ordering in 1T′ Molybdenum and Tungsten Ditelluride Layers Alloyed with Sulfur and Selenium | ACS Nano

Gas-Phase “Prehistory” and Molecular Precursors in Monolayer Metal  Dichalcogenides Synthesis: The Case of MoS2 | ACS Nano
Gas-Phase “Prehistory” and Molecular Precursors in Monolayer Metal Dichalcogenides Synthesis: The Case of MoS2 | ACS Nano

Tailoring Vacancies Far Beyond Intrinsic Levels Changes the Carrier Type  and Optical Response in Monolayer MoSe2−x Crystals | Nano Letters
Tailoring Vacancies Far Beyond Intrinsic Levels Changes the Carrier Type and Optical Response in Monolayer MoSe2−x Crystals | Nano Letters

Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic  Scholar
Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic Scholar

Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters
Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters

Covalent Nitrogen Doping and Compressive Strain in MoS2 by Remote N2 Plasma  Exposure | Nano Letters
Covalent Nitrogen Doping and Compressive Strain in MoS2 by Remote N2 Plasma Exposure | Nano Letters

Synthesis of Group VIII Magnetic Transition-Metal-Doped Monolayer MoSe2 |  ACS Nano
Synthesis of Group VIII Magnetic Transition-Metal-Doped Monolayer MoSe2 | ACS Nano

Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic  Scholar
Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic Scholar

Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic  Scholar
Manganese Doping of Monolayer MoS2: The Substrate Is Critical. | Semantic Scholar

Effect of lithium doping on the optical properties of monolayer MoS2:  Applied Physics Letters: Vol 112, No 12
Effect of lithium doping on the optical properties of monolayer MoS2: Applied Physics Letters: Vol 112, No 12

Doping against the Native Propensity of MoS2: Degenerate Hole Doping by  Cation Substitution | Nano Letters
Doping against the Native Propensity of MoS2: Degenerate Hole Doping by Cation Substitution | Nano Letters

Which Transition Metal Atoms Can Be Embedded into Two-Dimensional  Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters
Which Transition Metal Atoms Can Be Embedded into Two-Dimensional Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters

Which Transition Metal Atoms Can Be Embedded into Two-Dimensional  Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters
Which Transition Metal Atoms Can Be Embedded into Two-Dimensional Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters

Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters
Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters

Direct Synthesis of van der Waals Solids | ACS Nano
Direct Synthesis of van der Waals Solids | ACS Nano

Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters
Manganese Doping of Monolayer MoS2: The Substrate Is Critical | Nano Letters

Postgrowth Substitutional Tin Doping of 2D WS2 Crystals Using Chemical  Vapor Deposition | ACS Applied Materials & Interfaces
Postgrowth Substitutional Tin Doping of 2D WS2 Crystals Using Chemical Vapor Deposition | ACS Applied Materials & Interfaces

Tailoring Vacancies Far Beyond Intrinsic Levels Changes the Carrier Type  and Optical Response in Monolayer MoSe2−x Crystals | Nano Letters
Tailoring Vacancies Far Beyond Intrinsic Levels Changes the Carrier Type and Optical Response in Monolayer MoSe2−x Crystals | Nano Letters

Which Transition Metal Atoms Can Be Embedded into Two-Dimensional  Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters
Which Transition Metal Atoms Can Be Embedded into Two-Dimensional Molybdenum Dichalcogenides and Add Magnetism? | Nano Letters

Photoluminescence Quenching in Single-Layer MoS2 via Oxygen Plasma  Treatment | The Journal of Physical Chemistry C
Photoluminescence Quenching in Single-Layer MoS2 via Oxygen Plasma Treatment | The Journal of Physical Chemistry C