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市場調查報告書
商品編碼
2106530
固態固態電池市場預測至2034年—按電池類型、電解液材料、容量、應用、最終用戶和地區分類的全球分析Solid-State Battery Market Forecasts to 2034 - Global Analysis By Battery Type, Electrolyte Material, Capacity, Application, End User, and Geography |
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根據 Stratistics MRC 的數據,預計到 2026 年,全球固態電池市場規模將達到 38 億美元,並在預測期內以 35.3% 的複合年成長率成長,到 2034 年將達到 425 億美元。
固態電池是一種先進的可充電電池,它以固體電解質材料取代了傳統電池中使用的液態或凝膠狀電解質。這種設計透過降低洩漏和熱失控的風險來提高安全性,同時也實現了更高的能量密度、更快的充電速度、更長的循環壽命和更好的熱穩定性。固態電池正被開發用於電動車、家用電子電器、航太、醫療設備以及電網儲能等領域。固體電解質材料和電池製造技術的不斷進步正在加速其商業化。對更安全、更有效率的儲能解決方案日益成長的需求正在推動全球固態電池市場的發展。
對更安全電池的需求日益成長
固態固態電池以固體電解質取代液態電解質,提高了電池安全性,增加了能量密度,並增強了電動車、家用電子電器和儲能應用領域的性能。各行業正在加速投資下一代電池技術,以降低火災風險並提高運作可靠性。日益成長的電氣化趨勢正在推動對高性能儲能解決方案的需求。材料的持續創新正在提高電池效率和使用壽命。不斷擴大的研究和商業化投入正在推動市場成長。固態固態電池正成為先進儲能領域的變革性技術。
大規模生產能力短缺
固態固態電池的商業化生產需要先進的生產技術、專用材料和嚴格控制的製造流程。產能不足推高了生產成本,延緩了大規模商業化。電池製造商正在投資建設中試生產設施和製程最佳化技術。製造方法的不斷進步提高了產能可擴展性。工業投資的增加也為未來的產能提供了支持。擴大商業化生產規模仍然是該行業面臨的主要挑戰之一。
電動飛機採用電池
固態電池具有高能量密度、輕量化和高安全性等特點,是新興電動飛機和先進空中交通平台的理想選擇。航太製造商正在評估固態固態電池技術在下一代推進系統中的應用。電池效能的持續提升正推動著航空認證的進程。對電動航空領域研究的投入正在加速技術發展。高性能電池系統正在創造新的商業性機會。電動航空代表固態固態電池極具發展前景的未來應用領域。
商業化進程延誤
與材料性能、製造規模化和長期耐久性相關的技術挑戰可能會延長產品大規模商業化部署所需的時間。這些延誤可能導致研發成本增加和市場進入延遲。各公司正持續投資於先進研發和試點製造項目,以加速商業化進程。戰略合作有助於克服技術壁壘。持續創新對於市場擴張至關重要。商業化準備持續影響著產業成長。
新冠疫情曾一度擾亂電池研發和生產活動以及全球供應鏈,影響了技術開發進度。疫情過後,對電動車、先進電池技術和清潔能源儲存的投資顯著加速,進一步推高了對固態電池創新技術的需求。各國政府和私人企業加大了對下一代電池研發的投入。隨著電氣化進程的推進,電池製造活動也逐漸恢復。策略合作加強了整個電池產業的商業化進程。隨著疫情後經濟的復甦,固態固態電池技術的發展仍持續加速。
在預測期內,硫化物基細分市場預計將佔據最大的市場佔有率。
預計在預測期內,硫化物基固態電解質將佔據最大的市場佔有率,因為其高離子電導率能夠實現高效的電池性能,並支持高能量密度應用。硫化物基固體電解質為先進電動車和家用電子電器的電池提供了卓越的電化學性能。製造商持續投資於硫化物材料的研發,以提高其耐久性和生產效率。持續的研究正在提升商業性可行性。對高性能電池日益成長的需求正在推動其應用。硫化物基固體電解質將繼續保持其在市場中的主要材料類別地位。
預計在預測期內,能源儲存系統領域將呈現最高的複合年成長率。
在預測期內,受可再生能源儲能專案部署不斷增加的推動,能源儲存系統領域預計將呈現最高的成長率。固態固態電池在固定式儲能應用中具有更高的安全性、更長的使用壽命和更高的能量密度。電力公司正在採用先進的電池技術來提高電網穩定性和可再生能源的利用率。全球對長期儲能的投資持續成長。清潔能源轉型正在加速商業化部署。能源儲存系統可望成為固態電池成長最快的應用領域。
在預測期內,亞太地區憑藉其強大的電池製造生態系統,預計將佔據最大的市場佔有率。中國憑藉其龐大的電池產能引領區域市場,而日本則持續推進固態電池的研發和商業化。韓國大力投資下一代電池技術,台灣則透過其先進的電子元件製造能力為區域供應鏈提供支援。強大的產業基礎和持續的投資進一步鞏固了該地區的主導地位。亞太地區將持續維持固態電池市場領先地位。
在預測期內,亞太地區預計將呈現最高的複合年成長率,這主要得益於電動車產量的擴張。中國正加速大規模部署先進電池,印度也加大對國內電池製造的投資。日本正持續推動全固態電池技術的商業化,韓國則在擴大其下一代儲能解決方案的生產設施。政府獎勵和私營部門的投資正在推動全部區域的市場快速擴張。預計亞太地區將成為全固態電池市場成長最快的地區。
According to Stratistics MRC, the Global Solid-State Battery Market is accounted for $3.8 billion in 2026 and is expected to reach $42.5 billion by 2034 growing at a CAGR of 35.3% during the forecast period. A solid-state battery is an advanced rechargeable battery that replaces the liquid or gel electrolyte found in conventional batteries with a solid electrolyte material. This design enhances safety by reducing the risk of leakage and thermal runaway while enabling higher energy density, faster charging, longer cycle life, and improved thermal stability. Solid-state batteries are being developed for electric vehicles, consumer electronics, aerospace, medical devices, and grid energy storage applications. Continuous advancements in solid electrolyte materials and battery manufacturing technologies are accelerating commercialization. Growing demand for safer and higher-performance energy storage solutions is driving the global solid-state battery market.
Rising demand for safer batteries
Solid-state batteries replace liquid electrolytes with solid electrolytes to improve battery safety increase energy density and enhance performance across electric mobility consumer electronics and energy storage applications. Industries are accelerating investments in next-generation battery technologies to reduce fire risks and improve operational reliability. Growing electrification trends are strengthening demand for high-performance energy storage solutions. Continuous material innovation is improving battery efficiency and lifespan. Expanding research and commercialization efforts are supporting market growth. Solid-state batteries are emerging as a transformative technology for advanced energy storage.
Low large-scale production capacity
Manufacturing solid-state batteries at commercial volumes requires advanced production techniques specialized materials and highly controlled fabrication processes. Limited manufacturing capacity increases production costs and delays large-scale commercialization. Battery manufacturers are investing in pilot production facilities and process optimization technologies. Continuous advancements in manufacturing methods are improving scalability. Expanding industrial investments are supporting future production capacity. Scaling commercial manufacturing remains one of the industry's primary challenges.
Electric aviation battery adoption
Solid-state batteries offer high energy density lightweight construction and enhanced safety making them attractive for emerging electric aircraft and advanced air mobility platforms. Aerospace manufacturers are evaluating solid-state battery technologies for next-generation propulsion systems. Continuous improvements in battery performance are supporting aviation certification efforts. Investments in electric aviation research are accelerating technology development. High-performance battery systems are creating new commercial opportunities. Electric aviation represents a promising future application for solid-state batteries.
Commercialization timeline delays
Technical challenges related to material performance manufacturing scalability and long-term durability may extend the time required for widespread commercial deployment. Delays can increase development costs and slow market adoption. Companies continue investing in advanced research and pilot manufacturing programs to accelerate commercialization. Strategic collaborations are helping overcome technical barriers. Continuous innovation remains essential for market expansion. Commercial readiness continues to influence industry growth.
The COVID-19 pandemic temporarily disrupted battery research manufacturing activities and global supply chains affecting technology development timelines. Following the pandemic investments in electric vehicles advanced battery technologies and clean energy storage accelerated significantly creating stronger demand for solid-state battery innovation. Governments and private companies expanded funding for next-generation battery research. Manufacturing activities recovered as electrification initiatives gained momentum. Strategic partnerships strengthened commercialization efforts across the battery industry. The post-pandemic recovery continues accelerating the development of solid-state battery technologies.
The sulfide-based segment is expected to be the largest during the forecast period
The sulfide-based segment is expected to account for the largest market share during the forecast period as its high ionic conductivity enables efficient battery performance and supports high-energy-density applications. Sulfide-based solid electrolytes offer excellent electrochemical characteristics for advanced electric vehicle and consumer electronics batteries. Manufacturers continue investing in sulfide material development to improve durability and production efficiency. Ongoing research is strengthening commercial viability. Increasing demand for high-performance batteries is supporting widespread adoption. Sulfide-based solid electrolytes remain the leading material segment in the market.
The energy storage systems segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the energy storage systems segment is predicted to witness the highest growth rate due to growing deployment of renewable energy storage projects. Solid-state batteries provide improved safety longer operational life and high energy density for stationary energy storage applications. Utility providers are adopting advanced battery technologies to improve grid stability and renewable energy utilization. Investments in long-duration energy storage continue expanding worldwide. Clean energy transition initiatives are accelerating commercial deployment. Energy storage systems are expected to become the fastest-growing application for solid-state batteries.
During the forecast period, the Asia Pacific region is expected to hold the largest market share owing to its strong battery manufacturing ecosystem. China leads the regional market through extensive battery production capacity while Japan continues advancing solid-state battery research and commercialization. South Korea is investing heavily in next-generation battery technologies and Taiwan supports the regional supply chain through advanced electronic component manufacturing. Strong industrial capabilities and sustained investments continue reinforcing regional leadership. Asia Pacific remains the dominant market for solid-state batteries.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR driven by expanding electric vehicle production. China is accelerating large-scale deployment of advanced batteries while India is increasing investments in domestic battery manufacturing. Japan continues developing commercial solid-state battery technologies and South Korea is expanding production facilities for next-generation energy storage solutions. Government incentives and private sector investments are supporting rapid market expansion across the region. Asia Pacific is expected to register the fastest growth in the solid-state battery market.
Key players in the market
Some of the key players in Solid-State Battery Market include QuantumScape Corporation, Solid Power, Inc., Toyota Motor Corporation, Samsung SDI Co., Ltd., Panasonic Holdings Corporation, LG Energy Solution Ltd., CATL, ProLogium Technology Co., Ltd., Factorial Energy, Inc., SES AI Corporation, Blue Solutions SA, Ilika plc, Nissan Motor Co., Ltd., Murata Manufacturing Co., Ltd. and Hitachi, Ltd.
In May 2026, Solid Power, Inc. expanded its electrolyte production agreement with SK On to support commercialization across Asia. The company continues scaling its sulfide-based solid electrolyte powder shipments for high-capacity EV cell lines. Furthermore, ongoing joint testing with automotive partners validates thermal stability and improved energy density for next-generation electric platforms.
In November 2025, Panasonic Holdings Corporation unveiled a breakthrough ultra-fast charging solid-state battery prototype for electric transport applications. The specialized cell design incorporates heat-resistant solid electrolytes that drastically mitigate thermal degradation risks during rapid power transfers. Panasonic plans to integrate these advanced battery architectures into commercial mobility solutions, prioritizing long cycle life and high volumetric energy density.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) are also represented in the same manner as above.