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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 applications of metal–organic frameworks in electric energy... |  Download Scientific Diagram
The applications of metal–organic frameworks in electric energy... | Download Scientific Diagram

Metal–Organic Frameworks (MOFs) and MOF-Derived Materials for Energy  Storage and Conversion | SpringerLink
Metal–Organic Frameworks (MOFs) and MOF-Derived Materials for Energy Storage and Conversion | SpringerLink

High-Performance Aqueous Zinc-Ion Batteries Realized by MOF Materials |  SpringerLink
High-Performance Aqueous Zinc-Ion Batteries Realized by MOF Materials | SpringerLink

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)

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

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 - ScienceDirect
Metal-Organic Frameworks for Batteries - ScienceDirect

Exploring metal organic frameworks for energy storage in batteries and  supercapacitors - ScienceDirect
Exploring metal organic frameworks for energy storage in batteries and supercapacitors - ScienceDirect

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

Exploring metal organic frameworks for energy storage in batteries and  supercapacitors - ScienceDirect
Exploring metal organic frameworks for energy storage in batteries and supercapacitors - ScienceDirect

Nanomaterials | Free Full-Text | The Application of Indium  Oxide@CPM-5-C-600 Composite Material Derived from MOF in Cathode Material  of Lithium Sulfur Batteries | HTML
Nanomaterials | Free Full-Text | The Application of Indium Oxide@CPM-5-C-600 Composite Material Derived from MOF in Cathode Material of Lithium Sulfur Batteries | HTML

Toward Sustainable Li-Ion Batteries Recycling: Green MOF as a Molecular  Sieve for the Selective Separation of Cobalt and Nickel | Chemical  Engineering and Industrial Chemistry | ChemRxiv | Cambridge Open Engage
Toward Sustainable Li-Ion Batteries Recycling: Green MOF as a Molecular Sieve for the Selective Separation of Cobalt and Nickel | Chemical Engineering and Industrial Chemistry | ChemRxiv | Cambridge Open Engage

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

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)

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

Ionic-liquid impregnated MOF nanocrystals (Li-IL@MOF) for nano-wetted... |  Download Scientific Diagram
Ionic-liquid impregnated MOF nanocrystals (Li-IL@MOF) for nano-wetted... | Download Scientific Diagram

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

Graphene Wraps Up Lithium-Sulfur Batteries - IEEE Spectrum
Graphene Wraps Up Lithium-Sulfur Batteries - IEEE Spectrum

Metal–Organic‐Framework‐Derived Nanostructures as Multifaceted Electrodes  in Metal–Sulfur Batteries - Yan - 2021 - Advanced Materials - Wiley Online  Library
Metal–Organic‐Framework‐Derived Nanostructures as Multifaceted Electrodes in Metal–Sulfur Batteries - Yan - 2021 - Advanced Materials - Wiley Online Library

Metal–organic frameworks for lithium–sulfur batteries - Journal of  Materials Chemistry A (RSC Publishing) DOI:10.1039/C8TA11075A
Metal–organic frameworks for lithium–sulfur batteries - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/C8TA11075A

A Metal–Organic‐Framework‐Based Electrolyte with Nanowetted Interfaces for  High‐Energy‐Density Solid‐State Lithium Battery - Wang - 2018 - Advanced  Materials - Wiley Online Library
A Metal–Organic‐Framework‐Based Electrolyte with Nanowetted Interfaces for High‐Energy‐Density Solid‐State Lithium Battery - Wang - 2018 - Advanced Materials - Wiley Online Library

Researchers Develop Graphene Hybrid Material for More Efficient  Supercapacitors | OEM Off-Highway
Researchers Develop Graphene Hybrid Material for More Efficient Supercapacitors | OEM Off-Highway

a) Schematic of the MOF-based zinc-polyiodide redox flow battery... |  Download Scientific Diagram
a) Schematic of the MOF-based zinc-polyiodide redox flow battery... | Download Scientific Diagram

Frontiers | Transition Bimetal Based MOF Nanosheets for Robust Aqueous Zn  Battery | Materials
Frontiers | Transition Bimetal Based MOF Nanosheets for Robust Aqueous Zn Battery | Materials

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

Heterogeneous Nanoplates for Lithium-Ion Batteries :: ChemViews Magazine ::  ChemistryViews
Heterogeneous Nanoplates for Lithium-Ion Batteries :: ChemViews Magazine :: ChemistryViews

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

UNIST unveils new fast-charging, high-energy | EurekAlert!
UNIST unveils new fast-charging, high-energy | EurekAlert!