According to our latest research, the global Solid State Batteries market size will reach USD 777 million in 2031, growing at a CAGR of 28.1% over the analysis period.
Chemical energy storage, including lead acid batteries, nickel system batteries, and lithium ion batteries (LiBs), is considered to be the most promising energy storage technology for industrialization. Among these, LiBs have many advantages such as light weight, high energy density, high power density, and long life, and they are overwhelmingly preferred by designers for use in portable electronic devices such as cell phones and laptops. However, overcharging or short-circuiting can lead to high temperature and result in fire or explosion due to the presence of flammable organic electrolytes. Fires and explosions of LiBs have been reported throughout the world. The developments of electric vehicles (EVs) and large-scale energy storage devices for new kinds of power stations greatly expand the market for LiBs, meanwhile, stricter safety requirements apply to LiBs. Since large numbers of LiBs are packed together in EVs or power stations, fire or explosion in an LiB could be disastrous. Safety has become the main obstacle for the wide application of LiBs. To meet this issue, All-Solid-State Battery have entered the field.
A solid state battery is composed mainly of cathode, anode, and solid electrolyte, as developed during the latter half of the 20th century. All-Solid-State Battery have a simpler structure than the traditional LiBs, and the simplified structure with a solid electrolyte enables higher energy density. Solid electrolytes not only conduct Li+ ions but also serve as the separator, as shown in Figure below. In All-Solid-State Battery, no organic liquid electrolyte, electrolyte salt, separator, or binder is required, which dramatically simplifies the assembly process. The operational principle of All-Solid-State Battery is no different from the traditional LiBs. In the charge process, lithium ions deintercalate from the cathode material and transport to the anode through the electrolyte, while electrons drift to the anode by the external circuit. Lithium ions combine with electrons to form more complete lithium atoms. The discharge process is just the reverse.
The global Solid State Batteries key players are mainly located in US, Europe, Japan, South Korea and China, include the BMW, Hyundai, Dyson, Apple, CATL, 叠辞濒濒辞谤茅, Toyota and Panasonic, etc.
The Solid State Batteries market report provides a detailed analysis of global market size, regional and country-level market size, segmentation market growth, market share, competitive Landscape, sales analysis, impact of domestic and global market players, value chain optimization, trade regulations, recent developments, opportunities analysis, strategic market growth analysis, product launches, area marketplace expanding, and technological innovations.
麻豆原创 segmentation
Solid State Batteries market is split by Type and by Application. For the period 2025-2031, the growth among segments provide accurate calculations and forecasts for revenue by Type and by Application. This analysis can help you expand your business by targeting qualified niche markets.
麻豆原创 segment by Type, covers
Polymer-Based Solid State Batteries
Solid State Batteries with Inorganic Solid Electrolytes
麻豆原创 segment by Application, can be divided into
Consumer Electronics
Electric Vehicle
Aerospace
Others
麻豆原创 segment by players, this report covers
BMW
Hyundai
Dyson
Apple
CATL
叠辞濒濒辞谤茅
Toyota
Panasonic
Jiawei
Bosch
Quantum Scape
Ilika
Excellatron Solid State
Cymbet
Solid Power
Mitsui Kinzoku
Samsung
ProLogium
Front Edge Technology
麻豆原创 segment by regions, regional analysis covers
North America
Europe
Asia-Pacific
South America
Middle East & Africa
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1 麻豆原创 Overview
1.1 Product Overview and Scope of Solid State Batteries
1.2 Classification of Solid State Batteries by Type
1.2.1 Overview: Global Solid State Batteries 麻豆原创 Size by Type: 2025 Versus 2031
1.2.2 Global Solid State Batteries Revenue 麻豆原创 Share by Type in 2031
1.2.3 Polymer-Based Solid State Batteries
1.2.4 Solid State Batteries with Inorganic Solid Electrolytes
1.3 Global Solid State Batteries 麻豆原创 by Application
1.3.1 Overview: Global Solid State Batteries 麻豆原创 Size by Application: 2025 Versus 2031
1.3.2 Consumer Electronics
1.3.3 Electric Vehicle
1.3.4 Aerospace
1.3.5 Others
1.4 Global Solid State Batteries 麻豆原创 Size & Forecast
1.5 麻豆原创 Drivers, Restraints and Trends
1.5.1 Solid State Batteries 麻豆原创 Drivers
1.5.2 Solid State Batteries 麻豆原创 Restraints
1.5.3 Solid State Batteries Trends Analysis
2 Company Profiles
2.1 BMW
2.1.1 BMW Details
2.1.2 BMW Major Business
2.1.3 BMW Solid State Batteries Product and Solutions
2.1.4 BMW Recent Developments and Future Plans
2.2 Hyundai
2.2.1 Hyundai Details
2.2.2 Hyundai Major Business
2.2.3 Hyundai Solid State Batteries Product and Solutions
2.2.4 Hyundai Recent Developments and Future Plans
2.3 Dyson
2.3.1 Dyson Details
2.3.2 Dyson Major Business
2.3.3 Dyson Solid State Batteries Product and Solutions
2.3.4 Dyson Recent Developments and Future Plans
2.4 Apple
2.4.1 Apple Details
2.4.2 Apple Major Business
2.4.3 Apple Solid State Batteries Product and Solutions
2.4.4 Apple Recent Developments and Future Plans
2.5 CATL
2.5.1 CATL Details
2.5.2 CATL Major Business
2.5.3 CATL Solid State Batteries Product and Solutions
2.5.4 CATL Recent Developments and Future Plans
2.6 叠辞濒濒辞谤茅
2.6.1 叠辞濒濒辞谤茅 Details
2.6.2 叠辞濒濒辞谤茅 Major Business
2.6.3 叠辞濒濒辞谤茅 Solid State Batteries Product and Solutions
2.6.4 叠辞濒濒辞谤茅 Recent Developments and Future Plans
2.7 Toyota
2.7.1 Toyota Details
2.7.2 Toyota Major Business
2.7.3 Toyota Solid State Batteries Product and Solutions
2.7.4 Toyota Recent Developments and Future Plans
2.8 Panasonic
2.8.1 Panasonic Details
2.8.2 Panasonic Major Business
2.8.3 Panasonic Solid State Batteries Product and Solutions
2.8.4 Panasonic Recent Developments and Future Plans
2.9 Jiawei
2.9.1 Jiawei Details
2.9.2 Jiawei Major Business
2.9.3 Jiawei Solid State Batteries Product and Solutions
2.9.4 Jiawei Recent Developments and Future Plans
2.10 Bosch
2.10.1 Bosch Details
2.10.2 Bosch Major Business
2.10.3 Bosch Solid State Batteries Product and Solutions
2.10.4 Bosch Recent Developments and Future Plans
2.11 Quantum Scape
2.11.1 Quantum Scape Details
2.11.2 Quantum Scape Major Business
2.11.3 Quantum Scape Solid State Batteries Product and Solutions
2.11.4 Quantum Scape Recent Developments and Future Plans
2.12 Ilika
2.12.1 Ilika Details
2.12.2 Ilika Major Business
2.12.3 Ilika Solid State Batteries Product and Solutions
2.12.4 Ilika Recent Developments and Future Plans
2.13 Excellatron Solid State
2.13.1 Excellatron Solid State Details
2.13.2 Excellatron Solid State Major Business
2.13.3 Excellatron Solid State Solid State Batteries Product and Solutions
2.13.4 Excellatron Solid State Recent Developments and Future Plans
2.14 Cymbet
2.14.1 Cymbet Details
2.14.2 Cymbet Major Business
2.14.3 Cymbet Solid State Batteries Product and Solutions
2.14.4 Cymbet Recent Developments and Future Plans
2.15 Solid Power
2.15.1 Solid Power Details
2.15.2 Solid Power Major Business
2.15.3 Solid Power Solid State Batteries Product and Solutions
2.15.4 Solid Power Recent Developments and Future Plans
2.16 Mitsui Kinzoku
2.16.1 Mitsui Kinzoku Details
2.16.2 Mitsui Kinzoku Major Business
2.16.3 Mitsui Kinzoku Solid State Batteries Product and Solutions
2.16.4 Mitsui Kinzoku Recent Developments and Future Plans
2.17 Samsung
2.17.1 Samsung Details
2.17.2 Samsung Major Business
2.17.3 Samsung Solid State Batteries Product and Solutions
2.17.4 Samsung Recent Developments and Future Plans
2.18 ProLogium
2.18.1 ProLogium Details
2.18.2 ProLogium Major Business
2.18.3 ProLogium Solid State Batteries Product and Solutions
2.18.4 ProLogium Recent Developments and Future Plans
2.19 Front Edge Technology
2.19.1 Front Edge Technology Details
2.19.2 Front Edge Technology Major Business
2.19.3 Front Edge Technology Solid State Batteries Product and Solutions
2.19.4 Front Edge Technology Recent Developments and Future Plans
3 麻豆原创 Competition, by Players
3.1 Global Solid State Batteries Revenue and Share by Players (2025 & 2031)
3.2 Solid State Batteries Players Head Office, Products and Services Provided
3.3 Solid State Batteries Mergers & Acquisitions
3.4 Solid State Batteries New Entrants and Expansion Plans
4 Global Solid State Batteries Forecast by Region
4.1 Global Solid State Batteries 麻豆原创 Size by Region: 2025 VS 2031
4.2 Global Solid State Batteries 麻豆原创 Size by Region, (2025-2031)
4.3 North America
4.3.1 Key Companies of Solid State Batteries in North America
4.3.2 Current Situation and Forecast of Solid State Batteries in North America
4.3.3 North America Solid State Batteries 麻豆原创 Size and Prospect (2025-2031)
4.4 Europe
4.4.1 Key Companies of Solid State Batteries in Europe
4.4.2 Current Situation and Forecast of Solid State Batteries in Europe
4.4.3 Europe Solid State Batteries 麻豆原创 Size and Prospect (2025-2031)
4.5 Asia-Pacific
4.5.1 Key Companies of Solid State Batteries in Asia-Pacific
4.5.2 Current Situation and Forecast of Solid State Batteries in Asia-Pacific
4.5.3 Asia-Pacific Solid State Batteries 麻豆原创 Size and Prospect (2025-2031)
4.5.4 China
4.5.5 Japan
4.5.6 South Korea
4.6 South America
4.6.1 Key Companies of Solid State Batteries in South America
4.6.2 Current Situation and Forecast of Solid State Batteries in South America
4.6.3 South America Solid State Batteries 麻豆原创 Size and Prospect (2025-2031)
4.7 Middle East & Africa
4.7.1 Key Companies of Solid State Batteries in Middle East & Africa
4.7.2 Current Situation and Forecast of Solid State Batteries in Middle East & Africa
4.7.3 Middle East & Africa Solid State Batteries 麻豆原创 Size and Prospect (2025-2031)
5 麻豆原创 Size Segment by Type
5.1 Global Solid State Batteries 麻豆原创 Forecast by Type (2025-2031)
5.2 Global Solid State Batteries 麻豆原创 Share Forecast by Type (2025-2031)
6 麻豆原创 Size Segment by Application
6.1 Global Solid State Batteries 麻豆原创 Forecast by Application (2025-2031)
6.2 Global Solid State Batteries 麻豆原创 Share Forecast by Application (2025-2031)
7 Research Findings and Conclusion
8 Appendix
8.1 Methodology
8.2 Research Process and Data Source
8.3 Disclaimer
BMW
Hyundai
Dyson
Apple
CATL
叠辞濒濒辞谤茅
Toyota
Panasonic
Jiawei
Bosch
Quantum Scape
Ilika
Excellatron Solid State
Cymbet
Solid Power
Mitsui Kinzoku
Samsung
ProLogium
Front Edge Technology
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*If Applicable.