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Benchmarking the performance of all-solid-state lithium batteries
by
Koerver, Raimund
, Weber, Dominik A.
, Adermann, Torben
, Kötz, Olaf
, Ivers-Tiffée, Ellen
, Braun, Philipp
, Weber, André
, Kulisch, Jörn
, Randau, Simon
, Zeier, Wolfgang G.
, Richter, Felix H.
, Janek, Jürgen
in
639/301/299
/ 639/4077/4079/891
/ 639/638/161
/ Analysis
/ Benchmarks
/ Economics and Management
/ Electrochemistry
/ Electrolytic cells
/ Energy
/ Energy efficiency
/ Energy Policy
/ Energy Storage
/ Energy Systems
/ Lithium
/ Lithium batteries
/ Parameter identification
/ Polymers
/ Power management
/ Reference systems
/ Renewable and Green Energy
/ Solid electrolytes
/ Solid state
/ Specific energy
/ Target recognition
/ Thiophosphate
2020
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Benchmarking the performance of all-solid-state lithium batteries
by
Koerver, Raimund
, Weber, Dominik A.
, Adermann, Torben
, Kötz, Olaf
, Ivers-Tiffée, Ellen
, Braun, Philipp
, Weber, André
, Kulisch, Jörn
, Randau, Simon
, Zeier, Wolfgang G.
, Richter, Felix H.
, Janek, Jürgen
in
639/301/299
/ 639/4077/4079/891
/ 639/638/161
/ Analysis
/ Benchmarks
/ Economics and Management
/ Electrochemistry
/ Electrolytic cells
/ Energy
/ Energy efficiency
/ Energy Policy
/ Energy Storage
/ Energy Systems
/ Lithium
/ Lithium batteries
/ Parameter identification
/ Polymers
/ Power management
/ Reference systems
/ Renewable and Green Energy
/ Solid electrolytes
/ Solid state
/ Specific energy
/ Target recognition
/ Thiophosphate
2020
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Benchmarking the performance of all-solid-state lithium batteries
by
Koerver, Raimund
, Weber, Dominik A.
, Adermann, Torben
, Kötz, Olaf
, Ivers-Tiffée, Ellen
, Braun, Philipp
, Weber, André
, Kulisch, Jörn
, Randau, Simon
, Zeier, Wolfgang G.
, Richter, Felix H.
, Janek, Jürgen
in
639/301/299
/ 639/4077/4079/891
/ 639/638/161
/ Analysis
/ Benchmarks
/ Economics and Management
/ Electrochemistry
/ Electrolytic cells
/ Energy
/ Energy efficiency
/ Energy Policy
/ Energy Storage
/ Energy Systems
/ Lithium
/ Lithium batteries
/ Parameter identification
/ Polymers
/ Power management
/ Reference systems
/ Renewable and Green Energy
/ Solid electrolytes
/ Solid state
/ Specific energy
/ Target recognition
/ Thiophosphate
2020
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Benchmarking the performance of all-solid-state lithium batteries
Journal Article
Benchmarking the performance of all-solid-state lithium batteries
2020
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Overview
Increasing the specific energy, energy density, specific power, energy efficiency and energy retention of electrochemical storage devices are major incentives for the development of all-solid-state batteries. However, a general evaluation of all-solid-state battery performance is often difficult to derive from published reports, mostly due to the interdependence of performance measures, but also due to the lack of a basic reference system. Here, we present all-solid-state batteries reduced to the bare minimum of compounds, containing only a lithium metal anode, β-Li
3
PS
4
solid electrolyte and Li(Ni
0.6
Co
0.2
Mn
0.2
)O
2
cathode active material. We use this minimalistic system to benchmark the performance of all-solid-state batteries. In a Ragone-type graph, we compare literature data for thiophosphate-, oxide-, phosphate- and polymer-based all-solid-state batteries with our minimalistic cell. Using fundamental equations for key performance parameters, we identify research targets towards high energy, high power and practical all-solid-state batteries.
Considering the interdependence of performance measures and the lack of a basic reference system for all-solid-state batteries, Jürgen Janek and co-workers analyse literature performance data for major types of all-solid-state batteries and benchmark them against minimalistic reference cells.
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