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Metal–organic framework based electrode materials for lithium-ion batteries:  a review - RSC Advances (RSC Publishing) DOI:10.1039/D1RA05073G
Metal–organic framework based electrode materials for lithium-ion batteries: a review - RSC Advances (RSC Publishing) DOI:10.1039/D1RA05073G

The application of metal-organic frameworks in electrode materials for  lithium–ion and lithium–sulfur batteries | Royal Society Open Science
The application of metal-organic frameworks in electrode materials for lithium–ion and lithium–sulfur batteries | Royal Society Open Science

In situ growth of MOFs on the surface of si nanoparticles for highly  efficient lithium storage: Si@MOF nanocomposites as anode materials for  lithium-ion batteries. | Semantic Scholar
In situ growth of MOFs on the surface of si nanoparticles for highly efficient lithium storage: Si@MOF nanocomposites as anode materials for lithium-ion batteries. | Semantic Scholar

The application of metal-organic frameworks in electrode materials for  lithium–ion and lithium–sulfur batteries | Royal Society Open Science
The application of metal-organic frameworks in electrode materials for lithium–ion and lithium–sulfur batteries | Royal Society Open Science

Metal–organic framework-based materials: advances, exploits, and challenges  in promoting post Li-ion battery technologies - Materials Advances (RSC  Publishing)
Metal–organic framework-based materials: advances, exploits, and challenges in promoting post Li-ion battery technologies - Materials Advances (RSC Publishing)

Applications of Metal-organic Frameworks (MOFs) Materials in Lithium-ion  Battery/Lithium-metal Battery Electrolytes
Applications of Metal-organic Frameworks (MOFs) Materials in Lithium-ion Battery/Lithium-metal Battery Electrolytes

Metal-Organic Frameworks for Batteries
Metal-Organic Frameworks for Batteries

Conductive 2D metal-organic framework for high-performance cathodes in  aqueous rechargeable zinc batteries | Nature Communications
Conductive 2D metal-organic framework for high-performance cathodes in aqueous rechargeable zinc batteries | Nature Communications

High-Power Li-Metal Anode Enabled by Metal-Organic Framework Modified  Electrolyte - ScienceDirect
High-Power Li-Metal Anode Enabled by Metal-Organic Framework Modified Electrolyte - ScienceDirect

Figure 5 from Metal-Organic Frameworks (MOFs) as Sandwich Coating Cushion  for Silicon Anode in Lithium Ion Batteries. | Semantic Scholar
Figure 5 from Metal-Organic Frameworks (MOFs) as Sandwich Coating Cushion for Silicon Anode in Lithium Ion Batteries. | Semantic Scholar

Redox active azo-based metal–organic frameworks as anode materials for  lithium-ion batteries - New Journal of Chemistry (RSC Publishing)
Redox active azo-based metal–organic frameworks as anode materials for lithium-ion batteries - New Journal of Chemistry (RSC Publishing)

Metal-organic framework functionalization and design strategies for  advanced electrochemical energy storage devices | Communications Chemistry
Metal-organic framework functionalization and design strategies for advanced electrochemical energy storage devices | Communications Chemistry

Conversion of a microwave synthesized alkali-metal MOF to a carbonaceous  anode for Li-ion batteries - RSC Advances (RSC Publishing)
Conversion of a microwave synthesized alkali-metal MOF to a carbonaceous anode for Li-ion batteries - RSC Advances (RSC Publishing)

MOFs Help to Form a Safer Horizon for Li-ion Batteries
MOFs Help to Form a Safer Horizon for Li-ion Batteries

Nanomaterials | Free Full-Text | Durable Lithium/Selenium Batteries Enabled  by the Integration of MOF-Derived Porous Carbon and Alucone Coating
Nanomaterials | Free Full-Text | Durable Lithium/Selenium Batteries Enabled by the Integration of MOF-Derived Porous Carbon and Alucone Coating

MOF-Derived AlCuSe2 Embedded in a Carbon Matrix for an Economical Anode of  Lithium-Ion Battery | ACS Omega
MOF-Derived AlCuSe2 Embedded in a Carbon Matrix for an Economical Anode of Lithium-Ion Battery | ACS Omega

Metal–organic framework-based separator for lithium–sulfur batteries |  Nature Energy
Metal–organic framework-based separator for lithium–sulfur batteries | Nature Energy

Functionalizing MOF with Redox-Active Tetrazine Moiety for Improving the  Performance as Cathode of Li–O2 Batteries | CCS Chem
Functionalizing MOF with Redox-Active Tetrazine Moiety for Improving the Performance as Cathode of Li–O2 Batteries | CCS Chem

Progress and Perspective of Metal‐ and Covalent‐Organic Frameworks and  their Derivatives for Lithium‐Ion Batteries - Cui - 2021 - Batteries &  Supercaps - Wiley Online Library
Progress and Perspective of Metal‐ and Covalent‐Organic Frameworks and their Derivatives for Lithium‐Ion Batteries - Cui - 2021 - Batteries & Supercaps - Wiley Online Library

The application of metal-organic frameworks in electrode materials for  lithium–ion and lithium–sulfur batteries | Royal Society Open Science
The application of metal-organic frameworks in electrode materials for lithium–ion and lithium–sulfur batteries | Royal Society Open Science

Pancake-Like MOF Solid-State Electrolytes with Fast Ion Migration for  High-Performance Sodium Battery | SpringerLink
Pancake-Like MOF Solid-State Electrolytes with Fast Ion Migration for High-Performance Sodium Battery | SpringerLink

Researchers develop MOF membrane coating to prolong lithium–sulfur battery  life - Green Car Congress
Researchers develop MOF membrane coating to prolong lithium–sulfur battery life - Green Car Congress

Metal–organic frameworks as separators and electrolytes for lithium–sulfur  batteries - Journal of Materials Chemistry A (RSC Publishing)
Metal–organic frameworks as separators and electrolytes for lithium–sulfur batteries - Journal of Materials Chemistry A (RSC Publishing)