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Novel plasma-engineered MoS2 nanosheets for superior lithium-ion batteries  - ScienceDirect
Novel plasma-engineered MoS2 nanosheets for superior lithium-ion batteries - ScienceDirect

Batteries | Free Full-Text | An Exploratory Study of MoS2 as Anode Material  for Potassium Batteries
Batteries | Free Full-Text | An Exploratory Study of MoS2 as Anode Material for Potassium Batteries

Figure 5 from Vertical 1T-MoS2 nanosheets with expanded interlayer spacing  edged on a graphene frame for high rate lithium-ion batteries. | Semantic  Scholar
Figure 5 from Vertical 1T-MoS2 nanosheets with expanded interlayer spacing edged on a graphene frame for high rate lithium-ion batteries. | Semantic Scholar

Synthesis of V-MoS2 Layered Alloys as Stable Li-Ion Battery Anodes | ACS  Applied Energy Materials
Synthesis of V-MoS2 Layered Alloys as Stable Li-Ion Battery Anodes | ACS Applied Energy Materials

Frontiers | Advances of 2D MoS2 for High-Energy Lithium Metal Batteries
Frontiers | Advances of 2D MoS2 for High-Energy Lithium Metal Batteries

Structural models of the Li intercalated MoS2/Li/G (a), and the Li... |  Download Scientific Diagram
Structural models of the Li intercalated MoS2/Li/G (a), and the Li... | Download Scientific Diagram

Strain-engineered two-dimensional MoS2 as anode material for performance  enhancement of Li/Na-ion batteries | Scientific Reports
Strain-engineered two-dimensional MoS2 as anode material for performance enhancement of Li/Na-ion batteries | Scientific Reports

MoS2-MWCNT hybrids as a superior anode in lithium-ion batteries. | Semantic  Scholar
MoS2-MWCNT hybrids as a superior anode in lithium-ion batteries. | Semantic Scholar

Co-doped 1T-MoS2 nanosheets embedded in N, S-doped carbon nanobowls for  high-rate and ultra-stable sodium-ion batteries | SpringerLink
Co-doped 1T-MoS2 nanosheets embedded in N, S-doped carbon nanobowls for high-rate and ultra-stable sodium-ion batteries | SpringerLink

UT Dallas researchers use 2D MoS2 as protective layer for Li-metal anodes  in Li-S batteries; extended cycle life - Green Car Congress
UT Dallas researchers use 2D MoS2 as protective layer for Li-metal anodes in Li-S batteries; extended cycle life - Green Car Congress

Three-dimensional hierarchically porous MoS2 foam as high-rate and stable  lithium-ion battery anode | Nature Communications
Three-dimensional hierarchically porous MoS2 foam as high-rate and stable lithium-ion battery anode | Nature Communications

Metallic MoS2 for Stable, High-Rate Battery Performance
Metallic MoS2 for Stable, High-Rate Battery Performance

Glucose‐Induced Synthesis of 1T‐MoS2/C Hybrid for High‐Rate Lithium‐Ion  Batteries - Bai - 2019 - Small - Wiley Online Library
Glucose‐Induced Synthesis of 1T‐MoS2/C Hybrid for High‐Rate Lithium‐Ion Batteries - Bai - 2019 - Small - Wiley Online Library

Two‐Dimensional MoS2 for Li−S Batteries: Structural Design and Electronic  Modulation - Cao - 2020 - ChemSusChem - Wiley Online Library
Two‐Dimensional MoS2 for Li−S Batteries: Structural Design and Electronic Modulation - Cao - 2020 - ChemSusChem - Wiley Online Library

Exfoliated MoS2 as Electrode for All-Solid-State Rechargeable Lithium-Ion  Batteries | The Journal of Physical Chemistry C
Exfoliated MoS2 as Electrode for All-Solid-State Rechargeable Lithium-Ion Batteries | The Journal of Physical Chemistry C

Battery Separators Functionalized with Edge-Rich MoS2/C Hollow Microspheres  for the Uniform Deposition of Li2S in High-Performance Lithium–Sulfur  Batteries | Nano-Micro Letters
Battery Separators Functionalized with Edge-Rich MoS2/C Hollow Microspheres for the Uniform Deposition of Li2S in High-Performance Lithium–Sulfur Batteries | Nano-Micro Letters

Engineer improves rechargeable batteries with MoS2 nano 'sandwich' | Kansas  State University | News and Communications Services
Engineer improves rechargeable batteries with MoS2 nano 'sandwich' | Kansas State University | News and Communications Services

Clarifying the Working Principle of a High-Capacity Battery Electrode
Clarifying the Working Principle of a High-Capacity Battery Electrode

Hierarchical MoS2 tubular structures internally wired by carbon nanotubes  as a highly stable anode material for lithium-ion batteries | Science  Advances
Hierarchical MoS2 tubular structures internally wired by carbon nanotubes as a highly stable anode material for lithium-ion batteries | Science Advances

Figure 2 from The capacity fading mechanism and improvement of cycling  stability in MoS2-based anode materials for lithium-ion batteries. |  Semantic Scholar
Figure 2 from The capacity fading mechanism and improvement of cycling stability in MoS2-based anode materials for lithium-ion batteries. | Semantic Scholar

Electrochemical tuning of vertically aligned MoS2 nanofilms and its  application in improving hydrogen evolution reaction | PNAS
Electrochemical tuning of vertically aligned MoS2 nanofilms and its application in improving hydrogen evolution reaction | PNAS

Exploring the structure evolution of MoS2 upon Li/Na/K ion insertion and  the origin of the unusual stability in potassium ion batteries - Nanoscale  Horizons (RSC Publishing)
Exploring the structure evolution of MoS2 upon Li/Na/K ion insertion and the origin of the unusual stability in potassium ion batteries - Nanoscale Horizons (RSC Publishing)

Reviving bulky MoS2 as an advanced anode for lithium-ion batteries -  Journal of Materials Chemistry A (RSC Publishing)
Reviving bulky MoS2 as an advanced anode for lithium-ion batteries - Journal of Materials Chemistry A (RSC Publishing)

A Rechargeable Quasi-symmetrical MoS2 Battery - ScienceDirect
A Rechargeable Quasi-symmetrical MoS2 Battery - ScienceDirect

A Rechargeable Quasi-symmetrical MoS2 Battery
A Rechargeable Quasi-symmetrical MoS2 Battery

Atomic Layer Deposited MoS2 as a Carbon and Binder Free Anode in Li-ion  Battery - ScienceDirect
Atomic Layer Deposited MoS2 as a Carbon and Binder Free Anode in Li-ion Battery - ScienceDirect

2D MoS2 as an efficient protective layer for lithium metal anodes in  high-performance Li–S batteries | Nature Nanotechnology
2D MoS2 as an efficient protective layer for lithium metal anodes in high-performance Li–S batteries | Nature Nanotechnology