The South Korea Lithium-Ion Battery Materials Market was valued at $4241.9 Million in 2025 and projected to reach to $7973.6 Million by 2030, representing a compound annual growth rate of 13.5%. South Korea's lithium-ion battery materials market is poised for substantial growth through 2030, driven by the nation's leadership in battery manufacturing and increasing global demand for energy storage solutions.
| Market Size in | USD 26.32 MN |
| Market Forecast in | |
| CAGR | |
| Forecast Period | |
| Units Considered | Value (USD MN) |
South Korea's lithium-ion battery materials market is valued at USD 4,241.9 million in 2025 and is projected to reach USD 7,973.6 million by 2030, representing an 87.9% increase over the five-year period.
South Korea maintains a critical hub status within Asia Pacific's energy storage ecosystem, leveraging its advanced manufacturing capabilities and technological expertise in battery material production.
With a 13.5% CAGR through 2030, South Korea's market growth slightly trails the global average of 14.6%, reflecting mature market dynamics while still capturing significant expansion opportunities.
South Korea's position as a dominant battery manufacturer drives sustained demand for high-quality lithium-ion battery materials, supported by established supply chains and technological innovation.
| Report Metric | Details |
|---|---|
| Base Year | 2025 |
| Fastest Growing Segment | LITHIUM IRON PHOSPHATE (Battery Chemistry) |
| Forecast Period | 2025–2030 |
| Growth Rate | CAGR of 14.6% from 2025 to 2030 |
| Largest Segment | ELECTRIC VEHICLES (Application) |
| Market Size Base Year (Billions) | ~USD 48.23 (2025) |
| Revenue Forecast (Billions) | ~USD 95.34 (2030) |
| Segments Covered | Material, Battery Chemistry, Application |
3 segment dimensions are covered across the global market.
| Company | HQ | Ownership | Strongest segments |
|---|---|---|---|
| UMICORE | Belgium | Public Company | Battery Materials,Catalysis,Recycling, |
| SUMITOMO METAL MINING CO., LTD. | Japan | Public Company | Mineral Resources (copper, gold, nickel ores including Hishikari and other mines),Smelting and Refining (copper, nickel, cobalt, precious metals, sulfuric acid, by-products),Battery Materials (cathode materials for vehicles and other battery applications), |
| BASF | Germany | Public Company | Chemicals,Materials,Industrial Solutions, |
| POSCO FUTURE M | South Korea | Public Company | Cathode active materials,Anode materials (synthetic and natural graphite, Si-blends),Other battery materials and precursors, |
| RESONAC HOLDINGS CORPORATION | Japan | Public Company | Semiconductor and Electronic Materials,Mobility (automotive plastics, powder metals, aluminum, friction materials),Innovation Enabling Materials (batteries, ceramics, resins, adhesives, tapes), |
| TANAKA CHEMICAL CORPORATION | Japan | Private Company | Precursors for lithium-ion battery cathodes,Cathode materials for nickel-metal hydride batteries,Other inorganic chemical products, |
| TODA KOGYO CORP. | Japan | Public Company | Electronic printing materials (toner, carriers, magnetic materials),Battery materials (lithium cobaltate, lithium-nickel oxide, lithium manganate),Ferrite sheets, noise suppression, wireless power coils, RFID/NFC materials, |
| 3M | United States | Public Company | Safety and Industrial,Transportation and Electronics,Consumer, |
| SGL CARBON | Germany | Public Company | Graphite Solutions,Process Technology,Carbon Fibers, |
| UBE CORPORATION | United States | Public Company | Mobility,Delivery,Freight, |
| KURARAY CO., LTD. | Japan | Public Company | Vinyl Acetate (PVOH, PVB, EVOH resins and films),Isoprene (chemicals and thermoplastic elastomers),Functional Materials (medical, dental, activated carbon, membranes, lipids, CMP pads), |
Umicore is a Belgian public company founded in 1805 with 10,963 employees, specializing in materials technology and recycling.
Sumitomo Metal Mining Co., Ltd. is a Japanese public company with roots dating back to 1590 and 7,507 employees, operating in metal mining and processing.
BASF is a German public company founded in 1865 with 106,428 employees, serving as one of the world's largest chemical producers.
POSCO Future M is a South Korean public company founded in 1971, operating in advanced materials and related industries.
Resonac Holdings Corporation is a Japanese public company founded in 1939 with 21,525 employees, engaged in specialty chemicals and advanced materials.
Tanaka Chemical Corporation is a Japanese private company founded in 1957 with 151 employees, specializing in chemical manufacturing.
Toda Kogyo Corp. is a Japanese public company with a history dating back to 1823 and 1,037 employees, operating in the chemical industry.
3M is a United States public company founded in 1902 with 60,500 employees, known for diversified manufacturing across multiple industries.
SGL Carbon is a German public company founded in 1878 with 3,577 employees, specializing in carbon-based materials and solutions.
Ube Corporation is a United States public company founded in 2009 with 35,000 employees, operating in specialty chemicals and materials.
Kuraray Co., Ltd. is a Japanese public company founded in 1926 with 12,117 employees, specializing in specialty chemicals and synthetic resins.
South Korea's lithium-ion battery materials market is valued at USD 4,241.9 million in 2025 and is projected to reach USD 7,973.6 million by 2030.
South Korea's lithium-ion battery materials market is expected to grow at a compound annual growth rate (CAGR) of 13.5% from 2025 to 2030.
South Korea's growth is driven by its dominant battery manufacturing base, aggressive EV adoption targets, renewable energy expansion, and supply chain localization strategies.
While the global market grows at 14.6% CAGR, South Korea's 13.5% growth rate reflects its mature, high-volume production base and regional market saturation relative to emerging markets.
South Korea's demand spans cathode materials, anode materials, electrolytes, and separators, with cathode and anode materials representing the largest consumption segments driven by battery manufacturer concentration.
The research methodology used to estimate the current size of the lithium-ion battery materials market consisted of four major activities. Extensive secondary research was conducted to obtain detailed information on the market, peer markets, and parent markets. These findings, assumptions, and metrics were verified through primary research with experts from both the demand and supply sides of the lithium-ion battery materials value chain. Both top-down and bottom-up approaches were used to estimate the total market size. The estimation of market sizes for various segments and subsegments in the market was finalized using complete market segmentation and data triangulation techniques.
The research methodology for estimating and forecasting the lithium-ion battery materials market begins with gathering data on key vendors' revenues through secondary research. The secondary research process involves consulting a range of secondary sources, including D&B Hoover's, Bloomberg Businessweek, Factiva, the World Bank, and industry-specific journals. These sources include annual reports, press releases, investor presentations, white papers, peer-reviewed publications, articles from recognized authors, regulatory notifications, trade directories, and databases. Vendor offerings are also considered to inform market segmentation.
The lithium-ion battery materials market comprises several stakeholders throughout the supply chain, including raw material suppliers, processors, end-product manufacturers, and regulatory organizations. The demand side of this market is characterized by the development of various industries, including portable devices, electric vehicles, and industrial applications, among others. The supply side is characterized by technological advancements and a wide range of diverse applications. Various primary sources from both the supply and demand sides of the market were interviewed to obtain qualitative and quantitative information. The following is the breakdown of the primary respondents:
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The top-down and bottom-up approaches have been employed to estimate and validate the total size of the lithium-ion battery materials market. These approaches have also been widely used to estimate the sizes of various dependent market subsegments. The research methodology used to estimate the market size included the following:
The following segments provide details about the overall market size estimation process employed in this study:

After estimating the overall market size using the above estimation, the market was split into various segments and subsegments. Data triangulation and market segmentation techniques, along with the market engineering process, were employed to obtain precise market analysis data for each segment and its subsegments. Research Methodology: The research methodology used to estimate and forecast the global market size began by aggregating data and information from various levels, including country-level data.
Lithium-ion battery materials are the components and substances used in the construction of lithium-ion batteries. These materials include the cathode and anode materials that store and release lithium ions, the separator that prevents electrical contact between them, the electrolyte that facilitates ion movement, and collector foils for electrical connections. These materials, when installed and built in the required format, enable the operation of lithium-ion batteries, which are widely used in electronic devices and electric vehicles due to their high energy density and rechargeability.
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