Tuesday, 02 January 2024 12:17 GMT

Global Solid-State Batteries Market Poised For Growth Through 2036 As EV Demand, Safer Energy Storage And Manufacturing Investments Accelerate


(MENAFN- GlobeNewsWire - Nasdaq) Demand for safer, higher-density batteries is rising across EVs, electronics, aerospace, medical devices and grid storage, creating opportunities in materials, manufacturing and partnerships.

Dublin, Sept. 14, 2026 (GLOBE NEWSWIRE) -- "The Global Solid-State Batteries Market 2026-2036" has been added to ResearchAndMarkets.com's offering.

The Global Solid-State Batteries Market 2026-2036, provides comprehensive market intelligence on the technologies, companies, applications and investment trends shaping the next generation of energy storage. The report delivers detailed technology analysis, market forecasts, competitive intelligence and profiles of more than 60 companies operating across the global solid-state battery value chain.

The global solid-state battery market is forecast to expand at compound annual growth rates of 33% to 57% through 2036. Growth is being driven by rising electric vehicle demand, consumer electronics miniaturisation, aviation electrification and increasing requirements for safer, higher-density energy storage. Toyota, Samsung SDI, CATL, BYD, Volkswagen and other major industry participants have committed substantial resources to solid-state battery research, development and manufacturing, with several mass-production programmes targeting 2027 and 2028.

Designed for investors, corporate strategists, research and development leaders, manufacturers and supply chain professionals, the report assesses the commercial outlook for all-solid-state and semi-solid-state battery technologies. Coverage includes sulfide, oxide, polymer, halide and composite solid electrolytes, supported by material property comparisons, ionic conductivity benchmarks and manufacturing process analysis.

Global solid-state battery market forecasts are segmented by electrolyte type, application, capacity and geography through 2036. Forecast data are presented in GWh and revenue terms, with analysis spanning electric vehicles, consumer electronics, medical devices, IoT and sensors, aerospace, drones, humanoid robots and grid-scale energy storage. The report also evaluates solid-state battery penetration within the wider lithium-ion battery market from 2025 to 2035.

Key Report Coverage:

  • Technology assessment of sulfide, oxide, polymer, halide and composite electrolytes, including performance benchmarks and commercialisation prospects.
  • Comparison of solid-state and conventional lithium-ion batteries across energy density, cycle life, charging capability, operating temperature, safety and volumetric performance.
  • Analysis of thin-film microbatteries, bulk solid-state batteries, three-dimensional designs and 3D-printed battery architectures.
  • SWOT analysis covering commercial strengths, technical limitations, market opportunities and competitive threats.
  • Evaluation of manufacturing bottlenecks, interfacial challenges, scalability constraints, environmental requirements, equipment needs and production yields.
  • Cost trajectory analysis by electrolyte type from 2024 to 2035, including cost drivers and projected parity with conventional lithium-ion batteries.
  • Assessment of semi-solid-state batteries and commercial vehicle deployments involving NIO, MG4, Mercedes-Benz EQS and Karma Kaveya.
  • Directory of 16 major pilot lines and manufacturing facilities, with details on capacity, technology, timelines and operational status.
  • Review of manufacturing innovations, including QuantumScape's Cobra process, Samsung SDI's Ro-Press technology, Solid Power's continuous electrolyte line, dry cathode electrodes, cold sintering and AI-based simulation platforms.
  • Analysis of 12 electric vehicle manufacturer demonstration and integration programmes, including battery partners, performance data and commercial milestones.
  • Supply chain mapping for lithium sulfide, zirconium compounds, high-nickel NCM cathodes, silicon anodes and lithium metal foil.
  • Assessment of 15 major supply chain partnerships and investments, including their strategic and commercial significance.
  • Regional solid-state battery market analysis for Asia-Pacific, China, Japan, South Korea, North America and Europe.
  • Coverage of China's three-phase solid-state battery industrialisation roadmap and approximately $830 million in government funding.
  • Regulatory analysis covering CSAE T/CSAE 434-2025, EU Battery Regulation 2023/1542, MIIT standards, Inflation Reduction Act manufacturing credits and DOE ARPA-E programmes.
  • Recycling and sustainability analysis, including electrolyte-specific recovery challenges, dissolvable interlayers and advanced electrolyte designs.
  • Tracking of more than $20 billion in cumulative global solid-state battery investment across government programmes, venture capital, corporate research and public markets.

The report includes company-by-company commercialisation roadmaps, partnership networks, product specifications, manufacturing status, financial information and competitive positioning. A comparative table of 20 leading solid-state battery companies examines technology platforms, energy density, fast-charging performance, production targets and key differentiators.

Market estimates are cross-referenced with projections from established research organisations, including Grand View Research, IDTechEx, SNE Research, Research Nester, Fortune Business Insights and Fuji Keizai. This approach provides a broad perspective on market sizing, shipment expectations and long-term adoption scenarios.

The Global Solid-State Batteries Market 2026-2036 equips decision-makers with actionable intelligence for evaluating automotive integration, monitoring technology readiness, assessing material supply risks, benchmarking competitors and identifying partnership or investment opportunities in the rapidly developing global solid-state battery market.

Key Topics Covered:

1 EXECUTIVE SUMMARY
1.1 Market Overview and Opportunity
1.2 Technology Landscape and Electrolyte Types
1.3 Semi-Solid-State Batteries: The Bridge Technology
1.4 Manufacturing Scale-Up and Cost Trajectory
1.5 Competitive Landscape and Key Players
1.6 Regional Dynamics
1.7 Regulatory and Standards Framework
1.8 Investment Landscape
1.9 Outlook: Coexistence, Then Transition

2 INTRODUCTION
2.1 Technology description
2.1.1 Solid-state electrolytes
2.2 Features and advantages
2.3 Technical specifications
2.4 Types
2.4.1 Microbatteries
2.4.1.1 Introduction
2.4.1.2 Materials
2.4.1.3 Applications
2.4.1.4 3D designs
2.4.2 Bulk type solid-state batteries
2.4.3 Semi-solid-state batteries (SSSBs)
2.4.3.1 Technology Overview
2.4.3.2 Technology Comparison
2.4.3.3 Commercial Deployments
2.4.3.4 Materials and Manufacturing Partnerships
2.5 SWOT analysis
2.6 Limitations

3 MANUFACTURING PROCESSES AND SCALE-UP CHALLENGES
3.1 Manufacturing Approaches by Electrolyte Type
3.2 Cost Analysis and Trajectory
3.2.1 Pilot Lines and Manufacturing Facilities
3.2.2 Equipment and Process Innovations

4 APPLICATIONS
4.1 Application Deployment Sequence
4.1.1 Electric Vehicles: OEM Demonstration Programs
4.1.2 Emerging Applications

5 SUPPLY CHAIN ANALYSIS
5.1 Critical Materials and Precursors
5.1.1 Key Supply Chain Partnerships and Investments

6 GLOBAL MARKET PROJECTIONS
6.1 Electrolyte Type Market Projections (GWh Shipped) to 2036
6.2 SSB Market Forecast by End-User Market (Revenue, USD Million, 2024-2036)

7 REGIONAL MARKET ANALYSIS
7.1 China: Policy and Industrialisation Roadmap
7.1.1 Japan: Structured Scaling
7.1.2 North America: Developer-OEM Partnership Model
7.1.3 Europe: Regulatory Push and Materials Independence

8 REGULATORY AND STANDARDS LANDSCAPE

9 RECYCLING AND SUSTAINABILITY

10 INVESTMENT LANDSCAPE

11 COMMERCIALISATION TIMELINES
11.1 Commercialisation Roadmaps
11.2 Global Penetration Projections

12 COMPETITIVE DYNAMICS: SSB VS. ADVANCING Li-ION

13 COMPANY PROFILES (69 COMPANY PROFILES)

14 REFERENCES

LIST OF TABLES
Table 1. Leading Solid-State Battery Companies - Technology, Specifications and Timeline Comparison
Table 2. Types of solid-state electrolytes
Table 3. Market segmentation and status for solid-state batteries
Table 4. Solid Electrolyte Material Comparison
Table 5. Typical process chains for manufacturing key components and assembly of solid-state batteries
Table 6. Comparison between liquid and solid-state batteries
Table 7. Semi-Solid-State vs. All-Solid-State vs. Conventional Li-ion Batteries
Table 8. Semi-Solid-State Battery Deployments in Production Vehicles
Table 9. Limitations of solid-state thin film batteries
Table 10. Manufacturing Requirements by Solid Electrolyte Type
Table 11. Solid-State Battery Cost Trajectory vs. Conventional Li-ion ($/kWh)
Table 12. Key Cost Drivers for Solid-State Battery Manufacturing
Table 13. Major Solid-State Battery Pilot Lines and Production Facilities (2024-2029)
Table 14. Key Manufacturing Process Innovations
Table 15. Solid-State Battery Application Deployment Timeline and Requirements
Table 16. Automaker Solid-State Battery Testing and Integration Programs (2025-2028)
Table 17. Emerging Application Areas for Solid-State Batteries
Table 18. Key Solid-State Battery Materials, Suppliers and Supply Status
Table 19. Major Supply Chain Partnerships and Investments (2024-2026)
Table 20. Electrolyte Type Market Projections (GWh Shipped) to 2036
Table 21. SSB Market Forecast by End-User Market (Revenue, USD Million, 2024-2036)
Table 22. Regional Solid-State Battery Market Overview
Table 23. China Solid-State Battery Industrialisation Phases
Table 24. Japan - Key Company Milestones and Timelines
Table 25. Global Regulatory and Standards Developments for Solid-State Batteries
Table 26. Recycling Challenges and Solutions by Electrolyte Type
Table 27. Major Solid-State Battery Investments and Funding (2021-2026)
Table 28. Solid-State Battery Commercialisation Roadmaps by Company
Table 29. Projected Global SSB Market Penetration
Table 30. SSB Advantages vs. Advancing Li-ion Technology
Table 31. CATL sodium-ion battery characteristics
Table 32. LiNa Energy battery characteristics

LIST OF FIGURES
Figure 1. Schematic illustration of all-solid-state lithium battery
Figure 2. ULTRALIFE thin film battery
Figure 3. Examples of applications of thin film batteries
Figure 4. Capacities and voltage windows of various cathode and anode materials
Figure 5. Traditional lithium-ion battery (left), solid state battery (right)
Figure 6. Bulk type compared to thin film type SSB
Figure 7. SWOT analysis: All-solid state batteries
Figure 8. Electrolyte Type Market Projections (GWh Shipped) to 2036
Figure 9. SSB Market Forecast by End-User Market (Revenue, USD Million, 2024-2036)
Figure 10. 24M battery
Figure 11. Ampcera's all-ceramic dense solid-state electrolyte separator sheets (25 um thickness, 50mm x 100mm size, flexible and defect free, room temperature ionic conductivity ~1 mA/cm)
Figure 12. 3D printed lithium-ion battery
Figure 13. Blue Solution module
Figure 14. Cymbet EnerChipT
Figure 15. ASSB All-Solid-State Battery by EGI 300 Wh/kg
Figure 16. Roll-to-roll equipment working with ultrathin steel substrate
Figure 17. 40 Ah battery cell
Figure 18. FDK Corp battery
Figure 19. Gelion Endure battery
Figure 20. Gelion GEN3 lithium sulfur batteries
Figure 21. HPB solid-state battery
Figure 22. Hitachi Zosen solid-state battery
Figure 23. Ilika solid-state batteries
Figure 24. Schematic of Ion Storage Systems solid-state battery structure
Figure 25. ITEN micro batteries
Figure 26. LiNa Energy battery
Figure 27. 3D solid-state thin-film battery technology
Figure 28. Cambrian battery
Figure 29. Prieto Foam-Based 3D Battery
Figure 30. ProLogium solid-state battery
Figure 31. Sakuu Corporation 3Ah Lithium Metal Solid-state Battery
Figure 32. SES Apollo batteries
Figure 33. Solid Power battery pouch cell
Figure 34. TeraWatt Technology solid-state battery

A selection of companies mentioned in this report includes, but is not limited to:

  • Altech Batteries
  • Advanced Solid-state Electrolyte Technology (ASET)
  • Blue Current Inc.
  • Blue Solutions (Bollore Group)
  • BTRY AG
  • BYD Company Ltd.
  • Chongqing Tailan New Energy Co. Ltd.
  • Contemporary Amperex Technology Co. Ltd. (CATL)
  • Cymbet Corporation
  • Donut Lab Oy
  • EVE Energy Co. Ltd.
  • Factorial Inc. (Factorial Energy)
  • Ganfeng Lithium Co. Ltd.
  • Hitachi Zosen Corporation
  • Jinghe Energy
  • Lightyear Engine
  • ProLogium Technology Co. Ltd.
  • WeLion New Energy Technology Co. Ltd.

For more information about this report visit

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