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Sodium-Ion Batteries Market

完整報告名稱與涵蓋範圍
Sodium-Ion Batteries Market Size, Share & Trends Analysis Report, By Cathode Chemistry (Layered Transition Metal Oxides, Polyanionic Compounds, Prussian Blue and Prussian White Analogues), By Cell Format (Prismatic, Cylindrical, Pouch), By Application (Stationary Energy Storage and Grid Applications, Two- and Three-Wheelers and Micromobility, Passenger and Commercial Electric Vehicles, Backup Power, Telecom and Industrial Applications), By End User, By Region, and Segment Forecasts, 2026-2035

報告摘要

The sodium-ion batteries market covers cells, modules and packs based on sodium-ion chemistry across layered oxide, polyanionic and Prussian blue analogue cathodes and prismatic, cylindrical and pouch formats, applied to stationary storage, micromobility, electric vehicles and backup and industrial power. Lithium-ion batteries and battery energy storage systems addressed in existing InsightAce studies are analysed as the competitive reference but excluded from revenue. The chemistry has reached commercial production because it avoids lithium, cobalt and nickel, tolerates cold temperatures and deep discharge, can be shipped at zero volts and uses aluminium current collectors on both electrodes, giving cost and supply-security advantages that matter when lithium prices spike. Chinese battery leaders have launched sodium-ion cells for entry-level vehicles and stationary storage, and start-ups in Europe, the United States and India are commercialising Prussian blue and polyanionic chemistries for grid and industrial customers. Energy density remains below lithium iron phosphate, and lithium price declines have narrowed the cost gap, so adoption depends on applications where safety, temperature range and cycle life outweigh density and on manufacturing scale that lowers cell cost. Standardisation, supply of hard carbon anodes and electrolyte salts and policy support for lithium-free storage shape growth. China dominates production and early deployment, with Europe, the United States and India building capacity and demand for grid and telecom applications. Competition involves lithium battery majors with sodium lines, sodium-ion pure-play developers and materials companies. The InsightAce study provides US$ revenue forecasts for every cathode chemistry, cell format, application and end user and regional segment over 2026-2035, plus segment trend analysis, competitive landscape mapping and profiles of leading participants.

授權報價

Single User$4,500 USD
Enterprise / Global Site Licence$9,500 USD

目錄 Table of Contents

Chapter 1. Methodology and Scope 1.1. Research Methodology 1.2. Research Scope & Assumptions Chapter 2. Executive Summary Chapter 3. Global Sodium-Ion Batteries Market Snapshot Chapter 4. Global Sodium-Ion Batteries Market Variables, Trends & Scope 4.1. Market Segmentation & Scope 4.2. Market Drivers 4.3. Market Challenges 4.4. Emerging Trends 4.5. Investment and Funding Analysis 4.6. Industry Analysis - Porter's Five Forces Analysis 4.7. Competitive Landscape and Market Positioning 4.8. Market Opportunity Analysis Chapter 5. Market Segmentation 1: By Cathode Chemistry Estimates & Trend Analysis 5.1. Cathode Chemistry & Market Share, 2026 & 2035 5.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by Cathode Chemistry: 5.2.1. Layered Transition Metal Oxides 5.2.2. Polyanionic Compounds 5.2.3. Prussian Blue and Prussian White Analogues Chapter 6. Market Segmentation 2: By Cell Format Estimates & Trend Analysis 6.1. Cell Format & Market Share, 2026 & 2035 6.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by Cell Format: 6.2.1. Prismatic 6.2.2. Cylindrical 6.2.3. Pouch Chapter 7. Market Segmentation 3: By Application Estimates & Trend Analysis 7.1. Application & Market Share, 2026 & 2035 7.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by Application: 7.2.1. Stationary Energy Storage and Grid Applications 7.2.2. Two- and Three-Wheelers and Micromobility 7.2.3. Passenger and Commercial Electric Vehicles 7.2.4. Backup Power, Telecom and Industrial Applications Chapter 8. Market Segmentation 4: By End User Estimates & Trend Analysis 8.1. End User & Market Share, 2026 & 2035 8.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by End User: 8.2.1. Utilities and Energy Storage Integrators 8.2.2. Automotive and Mobility OEMs 8.2.3. Telecom and Industrial Operators Chapter 9. Sodium-Ion Batteries Market: Regional Estimates & Trend Analysis 9.1. North America 9.1.1. United States 9.1.2. Canada 9.2. Europe 9.2.1. Germany 9.2.2. United Kingdom 9.2.3. France 9.2.4. Italy 9.2.5. Spain 9.2.6. Rest of Europe 9.3. Asia Pacific 9.3.1. China 9.3.2. Japan 9.3.3. India 9.3.4. South Korea 9.3.5. Australia 9.3.6. Southeast Asia 9.3.7. Rest of Asia Pacific 9.4. Latin America 9.4.1. Brazil 9.4.2. Mexico 9.4.3. Rest of Latin America 9.5. Middle East & Africa 9.5.1. GCC Countries 9.5.2. South Africa 9.5.3. Rest of Middle East & Africa Chapter 10. Competitive Landscape 10.1. Company Market Positioning Analysis 10.2. Strategic Developments (Partnerships, Expansions, Product Launches, M&A) Chapter 11. Company Profiles 11.1. Contemporary Amperex Technology Co., Limited (CATL) 11.2. BYD Company Limited 11.3. HiNa Battery Technology Co., Ltd. 11.4. Faradion Limited (Reliance Industries) 11.5. Natron Energy, Inc. 11.6. Peak Energy 11.7. Altris AB 11.8. Tiamat Energy SAS 11.9. Great Power Energy & Technology Co., Ltd. 11.10. Zhongke Haina 11.11. Northvolt Legacy Programs 11.12. Unigrid Battery 11.13. KPIT Technologies Limited (Sodium-Ion Programs) 11.14. AMTE Power (Legacy) 11.15. Zoolnasm (Sodium-Ion Cell Programs)

圖表清單 List of Tables & Figures

Table 1. Global Sodium-Ion Batteries Market Revenue Forecast by Cathode Chemistry, 2026-2035 (US$ Mn) Figure 1. Global Sodium-Ion Batteries Market Segmentation and Scope Overview Table 2. Global Sodium-Ion Batteries Market Revenue Forecast by Cell Format, 2026-2035 (US$ Mn) Figure 2. Global Sodium-Ion Batteries Market Share by Cathode Chemistry, 2026 & 2035 Table 3. Global Sodium-Ion Batteries Market Revenue Forecast by Application, 2026-2035 (US$ Mn) Figure 3. Sodium-Ion Versus Lithium Iron Phosphate: Cost, Energy Density and Performance Comparison Table 4. Global Sodium-Ion Batteries Market Revenue Forecast by End User, 2026-2035 (US$ Mn) Figure 4. Sodium-Ion Cell Manufacturing Capacity by Region and Producer, 2024-2030 Table 5. Global Sodium-Ion Batteries Market Revenue Forecast by Region, 2026-2035 (US$ Mn) Figure 5. Asia Pacific Sodium-Ion Batteries Growth Opportunity Analysis Table 6. North America Sodium-Ion Batteries Market Revenue by Country, 2026-2035 (US$ Mn) Figure 6. Competitive Positioning of Key Sodium-Ion Batteries Market Participants Table 7. Europe Sodium-Ion Batteries Market Revenue by Country, 2026-2035 (US$ Mn) Figure 7. Porter's Five Forces Analysis of the Global Sodium-Ion Batteries Market Table 8. Asia Pacific Sodium-Ion Batteries Market Revenue by Country, 2026-2035 (US$ Mn) Figure 8. Application Fit for Sodium-Ion Batteries Across Storage, Mobility and Industrial Uses Table 9. Strategic Developments of Leading Sodium-Ion Batteries Market Participants, 2023-2026

提及公司

Contemporary Amperex Technology Co., Limited (CATL)BYD Company LimitedHiNa Battery Technology Co., Ltd.Faradion Limited (Reliance Industries)Natron Energy, Inc.Peak EnergyAltris ABTiamat Energy SASGreat Power Energy & Technology Co., Ltd.Zhongke HainaNorthvolt Legacy ProgramsUnigrid BatteryKPIT Technologies Limited (Sodium-Ion Programs)AMTE Power (Legacy)Zoolnasm (Sodium-Ion Cell Programs)

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