skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Understanding Conversion-Type Electrodes for Lithium Rechargeable Batteries

Journal Article · · Accounts of Chemical Research

The need/desire to lower the consumption of fossil fuels and its environmental consequences has reached unprecedented levels in recent years. A global effort has been undertaken to develop advanced renewable energy generation and especially energy storage technologies, as they would enable a dramatic increase in the effective and efficient use of renewable (and often intermittent) energy sources. The development of electrical energy storage (EES) technologies with high energy and power densities, long life, low cost, and safe use represents a challenge from both the fundamental science and technological application points of view. While the advent and broad deployment of lithium-ion batteries (LIBs) has dramatically changed the EES landscape, their performance metrics need to be greatly enhanced to keep pace with the ever-increasing demands imposed by modern consumer electronics and especially the emerging automotive markets. Current battery technologies are mostly based on the use of a transition metal oxide cathode (e.g., LiCoO2, LiFePO4, or LiNiMnCoO2) and a graphite anode, both of which depend on intercalation/insertion of lithium ions for operation. While the cathode material currently limits the battery capacity and overall energy density, there is a great deal of interest in the development of high-capacity cathode materials as well as anode materials. Conversion reaction materials have been identified/proposed as potentially high-energy-density alternatives to intercalation-based materials. Yet, conversion reaction materials react during lithiation to form entirely new products, often with dramatically changed structure and chemistry, by reaction mechanisms that are still not completely understood. This makes it difficult to clearly distinguish the limitations imposed by the mechanism and practical losses from initial particle morphology, synthetic approaches, and electrode preparations. Transition metal compounds such as transition metal oxides, sulfides, fluorides, phosphides, and nitrides can undergo conversion reactions yielding materials with high theoretical capacity (generally from 500 to 1500 mA h g–1). Specifically, a number of transition metal oxides and sulfides have shown excellent electrochemical properties as high-capacity anode materials. In addition, some transition metal fluorides have shown great potential as cathode materials for Li rechargeable batteries. In this Account we present mechanistic studies, with emphasis on the use of operando methods, of selected examples of conversion-type materials as both potentially high-energy-density anodes and cathodes in EES applications. We also include examples of the conceptually similar conversion-type reactions involving chalcogens and halogens, with emphasis on the Li–S system. In this case we focus on the problems arising from the low electrical conductivities of elemental sulfur and Li2S and the “redox shuttle” phenomena of polysulfides. In addition to mechanistic insights from the use of operando methods, we further cover several key strategies in electrode materials design such as controlling the size, morphology, composition, and architecture.

Research Organization:
Energy Frontier Research Centers (EFRC) (United States). Energy Materials Center at Cornell (EMC2); Cornell Univ., Ithaca, NY (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES); National Science Foundation (NSF)
Grant/Contract Number:
SC0001086
OSTI ID:
1566341
Journal Information:
Accounts of Chemical Research, Vol. 51, Issue 2; ISSN 0001-4842
Publisher:
American Chemical SocietyCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 184 works
Citation information provided by
Web of Science

References (35)

Issues and challenges facing rechargeable lithium batteries journal November 2001
Nano-sized transition-metal oxides as negative-electrode materials for lithium-ion batteries journal September 2000
Conversion Reaction-Based Oxide Nanomaterials for Lithium Ion Battery Anodes journal December 2015
In operando X-ray studies of the conversion reaction in Mn 3 O 4 lithium battery anodes journal January 2013
Origin of additional capacities in metal oxide lithium-ion battery electrodes journal November 2013
Visualizing non-equilibrium lithiation of spinel oxide via in situ transmission electron microscopy journal May 2016
Reactions of graphene supported Co 3 O 4 nanocubes with lithium and magnesium studied by in situ transmission electron microscopy journal January 2016
Template-Free Synthesis of Hollow-Structured Co3O4 Nanoparticles as High-Performance Anodes for Lithium-Ion Batteries journal January 2015
Self-Assembled Fe 3 O 4 Nanoparticle Clusters as High-Performance Anodes for Lithium Ion Batteries via Geometric Confinement journal August 2013
Galvanic Replacement Reactions in Metal Oxide Nanocrystals journal May 2013
Mn3O4−Graphene Hybrid as a High-Capacity Anode Material for Lithium Ion Batteries journal October 2010
Thermodynamic analysis on energy densities of batteries journal January 2011
PEDOT Encapsulated FeOF Nanorod Cathodes for High Energy Lithium-Ion Batteries journal October 2015
Ternary metal fluorides as high-energy cathodes with low cycling hysteresis journal March 2015
Energy storage in composites of a redox couple host and a lithium ion host journal June 2012
Pomegranate-Structured Conversion-Reaction Cathode with a Built-in Li Source for High-Energy Li-Ion Batteries journal May 2016
In situ lithiated FeF3/C nanocomposite as high energy conversion-reaction cathode for lithium-ion batteries journal March 2016
Electrochemical Splitting of LiF: A New Approach to Lithium-Ion Battery Materials journal February 2014
Lithium-free transition metal monoxides for positive electrodes in lithium-ion batteries journal January 2017
A strategic approach to recharging lithium-sulphur batteries for long cycle life journal December 2013
Systematical electrochemical study on the parasitic shuttle-effect in lithium-sulfur-cells at different temperatures and different rates journal August 2014
Smaller Sulfur Molecules Promise Better Lithium–Sulfur Batteries journal October 2012
Sulfur-Impregnated Disordered Carbon Nanotubes Cathode for Lithium–Sulfur Batteries journal October 2011
Mechanistic insights into operational lithium–sulfur batteries by in situ X-ray diffraction and absorption spectroscopy journal January 2014
Elemental sulfur journal June 1976
Revealing the Electrochemical Charging Mechanism of Nanosized Li 2 S by in Situ and Operando X-ray Absorption Spectroscopy journal July 2017
A highly ordered nanostructured carbon–sulphur cathode for lithium–sulphur batteries journal May 2009
Key Parameters Governing the Energy Density of Rechargeable Li/S Batteries journal February 2014
Graphene Oxide as a Sulfur Immobilizer in High Performance Lithium/Sulfur Cells journal November 2011
Amylopectin Wrapped Graphene Oxide/Sulfur for Improved Cyclability of Lithium–Sulfur Battery journal September 2013
Yolk–Shell Structure of Polyaniline-Coated Sulfur for Lithium–Sulfur Batteries journal October 2013
A highly efficient polysulfide mediator for lithium–sulfur batteries journal January 2015
Lithium–sulphur batteries with a microporous carbon paper as a bifunctional interlayer journal January 2012
Improved lithium–sulfur batteries with a conductive coating on the separator to prevent the accumulation of inactive S-related species at the cathode–separator interface journal January 2014
Sodiation Kinetics of Metal Oxide Conversion Electrodes: A Comparative Study with Lithiation journal August 2015

Cited By (38)

Recent advances of polar transition-metal sulfides host materials for advanced lithium–sulfur batteries journal December 2018
Multi-electron transfer enabled by topotactic reaction in magnetite journal April 2019
Current Li-Ion Battery Technologies in Electric Vehicles and Opportunities for Advancements journal March 2019
Structure Design and Composition Engineering of Carbon‐Based Nanomaterials for Lithium Energy Storage journal March 2020
Understanding the electrochemical potential and diffusivity of MnO/C nanocomposites at various charge/discharge states journal January 2019
Energy storage: The future enabled by nanomaterials journal November 2019
Binder-free C@NiCo 2 O 4 on Ni foam with ultra-stable pseudocapacitive lithium ion storage journal January 2019
Uniform lithium deposition on N-doped carbon-coated current collectors journal January 2019
Pulsed Laser Deposited Films for Microbatteries journal June 2019
Development of Novel Cathode with Large Lithium Storage Mechanism Based on Pyrophosphate‐Based Conversion Reaction for Rechargeable Lithium Batteries journal January 2020
Beyond Intercalation Chemistry for Rechargeable Mg Batteries: A Short Review and Perspective journal January 2019
CuS Microspheres with Tunable Interlayer Space and Micropore as a High-Rate and Long-Life Anode for Sodium-Ion Batteries journal May 2018
Antimony‐Doped Lithium Phosphate Artificial Solid Electrolyte Interphase for Dendrite‐Free Lithium‐Metal Batteries journal January 2019
Significantly Improved Cyclability of Conversion‐Type Transition Metal Oxyfluoride Cathodes by Homologous Passivation Layer Reconstruction journal January 2020
Voltage issue of aqueous rechargeable metal-ion batteries journal January 2020
Nanostructured Conversion-Type Negative Electrode Materials for Low-Cost and High-Performance Sodium-Ion Batteries journal August 2018
Recent Advances and Perspectives of Carbon-Based Nanostructures as Anode Materials for Li-ion Batteries journal April 2019
Structural Reorganization–Based Nanomaterials as Anodes for Lithium‐Ion Batteries: Design, Preparation, and Performance journal September 2019
Exploring the origin of electrochemical performance of Cr-doped LiNi 0.5 Mn 1.5 O 4 journal January 2020
Interphases in Electroactive Suspension Systems: Where Chemistry Meets Mesoscale Physics journal April 2019
Sulfur encapsulation by MOF-derived CoS 2 embedded in carbon hosts for high-performance Li–S batteries journal January 2019
Enabling Full Conversion Reaction with High Reversibility to Approach Theoretical Capacity for Sodium Storage journal September 2019
Structure-Controllable Binary Nanoporous-Silicon/Antimony Alloy as Anode for High-Performance Lithium-Ion Batteries journal September 2018
Strongly Surface-Bonded MoO 2 @Carbon Nanocomposites by Nitrogen-Doping with Outstanding Capability for Fast and Stable Li Storage journal September 2018
Understanding the electrochemical reaction mechanism of VS 2 nanosheets in lithium-ion cells by multiple in situ and ex situ x-ray spectroscopy journal September 2018
2D few-layer iron phosphosulfide: a self-buffer heterophase structure induced by irreversible breakage of P–S bonds for high-performance lithium/sodium storage journal January 2019
Hollow CuS Nanoboxes as Li‐Free Cathode for High‐Rate and Long‐Life Lithium Metal Batteries journal January 2020
Atomic‐Scale Visualization of Electrochemical Lithiation Processes in Monolayer MoS 2 by Cryogenic Electron Microscopy journal October 2019
Binary graphene-based cathode structure for high-performance lithium-sulfur batteries journal January 2020
Flower-Like MoSe2/MoO2 Composite with High Capacity and Long-Term Stability for Lithium-Ion Battery journal September 2019
Effect of Continuous Capacity Rising Performed by FeS/Fe 3 C/C Composite Electrodes for Lithium‐Ion Batteries journal February 2020
Oxyvanite V 3 O 5 : A new intercalation‐type anode for lithium‐ion battery journal May 2019
Reversible High Capacity and Reaction Mechanism of Cr 2 (NCN) 3 Negative Electrodes for Li‐Ion Batteries journal December 2019
Porous Fe 3 O 4 Nanospheres as Effective Sulfur Hosts for Li-S Batteries journal January 2018
Beyond Intercalation Chemistry for Rechargeable Mg Batteries: A Short Review and Perspective text January 2019
Interphases in Electroactive Suspension Systems: Where Chemistry Meets Mesoscale Physics journal July 2019
Reversible High Capacity and Reaction Mechanism of Cr 2 (NCN) 3 Negative Electrodes for Li-Ion Batteries text January 2020
Hierarchically Porous Carbon Derived from Biomass Reed Flowers as Highly Stable Li-Ion Battery Anode journal February 2020

Similar Records

Self-Assembled Framework Formed During Lithiation of SnS2 Nanoplates Revealed by in Situ Electron Microscopy
Journal Article · Thu Jul 06 00:00:00 EDT 2017 · Accounts of Chemical Research · OSTI ID:1566341

Effective Electrochemical Charge Storage in the High-Lithium Compound Li8ZrO6
Journal Article · Tue Jan 01 00:00:00 EST 2019 · ACS Applied Energy Materials · OSTI ID:1566341

Aqueous Li-ion battery enabled by halogen conversion–intercalation chemistry in graphite
Journal Article · Wed May 08 00:00:00 EDT 2019 · Nature (London) · OSTI ID:1566341

Related Subjects