Global Lithium-Ion Battery Anode Market (2021 to 2026) - Increasing Adoption of Lithium-Ion Batteries in New Applications Presents Opportunities
DUBLIN, Aug. 3, 2021 /PRNewswire/ -- The "Lithium-Ion Battery Anode Market by Materials (Active Anode Materials and Anode Binders), Battery Product (Cell and Battery Pack), End-Use (Automotive and Non-Automotive), and Region (Europe, North America, and Asia Pacific) - Global Forecast to 2026" report has been added to ResearchAndMarkets.com's offering.
The global lithium-ion battery anode market size is projected to grow from USD 8.4 billion in 2021 to USD 21.0 billion by 2026, at a CAGR of 19.9% from 2021 to 2026.
The growing demand for electric vehicles along with the high demand for lithium-ion batteries for industrial applications is driving the market growth. Moreover, strategies such as agreements and plant expansions undertaken by several prominent players in the lithium-ion battery anode industry are further fueling the lithium-ion battery anode industry growth across the globe.
The Li-Compounds & Li-Metal active anode segment, by material, is projected to register the highest CAGR during the forecast period.
Li-metal batteries using Li metal as the anode provides a huge amount of increase in energy density. Unfortunately, in the past when scientists have experimented with lithium-metal batteries, they found it to be extremely unstable and often exploded. That's the reason scientists have now been able to stabilize the lithium-metal battery and bring a viable commercial version to the marketplace. Li-metal batteries is an ideal anode material for rechargeable batteries because of their extremely high theoretical specific capacity (3860 mA h g-1), low density (0.59 g cm-3) and lowest negative electrochemical potential.
Automotive segment by end-use accounts for the largest share for lithium-ion battery anode during the forecast period.
The market for electric vehicles is expected to grow in the near future, partly driven by the adoption of various environmental norms and emission regulations. Owing to environmental concerns and awareness about clean and sustainable fuel, there is a rise in the demand for electric vehicles. This has resulted in an increase in the demand for lithium-ion battery anode. There is also substantial support from governments in various countries in the form of incentives and subsidies to promote the purchase of electric vehicles.
Asia Pacific is projected to account for the largest share lithium-ion battery anode market during the forecast period.
The Asia Pacific region is expected to lead the lithium-ion battery anode industry from 2021 to 2026 in terms of both value and volume. The region has become an attractive automotive market, emerging as a hub for automobile production in recent years. Recent infrastructure developments and industrialization activities in emerging nations have opened ne avenues and opportunities for OEMs. The increasing purchasing power of the population has stimulated the demand for consumer electronics and automobiles, creating a need for lithium-ion batteries which in return creates the demand for lithium-ion battery anode.
Key Topics Covered:
1 Introduction
2 Research Methodology
3 Executive Summary
4 Premium Insights 4.1 Significant Opportunities in Lithium-Ion Battery Anode Market 4.2 Lithium-Ion Battery Anode Market, by Region 4.3 Lithium-Ion Battery Anode Market, by End-Use 4.4 Lithium-Ion Battery Anode Market, by Material
5 Market Overview 5.1 Introduction 5.2 Market Dynamics 5.2.1 Drivers 5.2.1.1 Increase in Demand for Ev Vehicles 5.2.1.2 Growing Need for Automation and Battery-Operated Equipment in Industries 5.2.1.3 High Demand for Lithium-Ion Batteries for Industrial Applications 5.2.1.4 Increase in R&D Initiatives by Lithium-Ion Battery Manufacturers 5.2.2 Restraints 5.2.2.1 Safety Issues Related to Storage and Transportation of Batteries 5.2.3 Opportunities 5.2.3.1 Increasing Adoption of Lithium-Ion Batteries in New Applications 5.2.3.2 Innovation and Technology Advances in Lithium-Ion Battery Anode Materials 5.2.4 Challenges 5.2.4.1 Overheating Issues of Lithium-Ion Batteries 5.2.4.2 High Cost of Lithium-Ion Battery-Operated Industrial Vehicles 5.2.4.3 Impact of COVID-19 5.3 Porter's Five Forces Analysis 5.4 Technology Analysis 5.5 Electrode Manufacturing Process 5.6 Research Progresses on Lib Manufacturing 5.7 Slurry Mixing 5.8 Coating, Drying & Solvent Recovery 5.9 Conclusion and Perspective 5.10 Case Study Analysis 5.10.1 Group 14 Technologies Silicone Based Anode Could Replace Graphite in Lithium-Ion Batteries 5.10.1.1 Advanced Silicon Anode Material by Group 14 Technologies, Scc55 5.11 Average Pricing of Lithium-Ion Battery Anode Materials 5.12 Trade Data Statistics
6 Lithium-Ion Battery Anode Patent Analysis 6.1 Introduction 6.2 Document Type 6.3 Insights
7 COVID-19 Impact on Lithium-Ion Battery Anode Market 7.1 Introduction 7.1.1 COVID-19 Impact on Lives and Livelihood 7.1.1.1 Economic Outlook by International Monetary Fund (Imf) 7.1.1.2 Stimulus Package by G-20 Countries 7.1.2 Impact of COVID-19 on Lithium-Ion Battery Anode Market 7.1.2.1 Introduction
8 Lithium-Ion Battery Anode Market, by Materials 8.1 Introduction 8.2 Active Anode Materials 8.2.1 Natural Graphite 8.2.1.1 Natural Being a Cost Effective Material for Lithium-Ion Battery Anode to Boost Market Growth 8.2.2 Synthetic Graphite 8.2.2.1 Fast Charging and Long Life Cycle to Enhance Demand 8.2.3 Silicon 8.2.3.1 Higher Charge Capacity Than Graphite to Increase Demand 8.2.4 Li-Compounds & Li-Metal 8.2.4.1 Fast Charging and High Energy Density to Propel Demand 8.3 Anode Binders 8.3.1 Growing Demand for Lithium-Ion Batteries to Rise Demand
9 Lithium-Ion Battery Anode Market, by End-Use 9.1 Introduction 9.2 Automotive 9.2.1 Rising Demand for Evs to Boost Segment Growth 9.3 Non-Automotive 9.3.1 Energy Storage 9.3.1.1 Increasing Infrastructure to Enhance Demand 9.3.2 Aerospace 9.3.2.1 Growing Usage of Lithium-Ion Batteries by Leading Players in Aircraft Industry 9.3.3 Marine 9.3.3.1 Increasing Use of Lithium-Ion Batteries for Various Applications 9.3.4 Others
10 Lithium-Ion Battery Anode Market, by Battery Products 10.1 Introduction 10.2 Cell 10.2.1 Low Weight and Compact Size Creating Demand for Cell Type Lithium-Ion Batteries 10.3 Battery Pack 10.3.1 Battery Packs Used in High Energy Density Applications
11 Lithium-Ion Battery Anode Market, by Region
12 Competitive Landscape
13 Company Profiles 13.1 Key Companies 13.1.1 Showa Denko Materials 13.1.2 Jfe Chemical Corporation 13.1.3 Kureha Corporation 13.1.4 Sgl Carbon 13.1.5 Shanshan Technology 13.1.6 Posco Chemical 13.1.7 Nippon Carbon 13.1.8 Nei Corporation 13.1.9 Jiangxi Zhengtuo New Energy Technology 13.1.10 Jiangxi Zichen Technology 13.1.11 Mitsubishi Chemical Corporation 13.2 Other Players 13.2.1 Aekyung Petrochemical - Lithium-Ion Battery Anode Market 13.2.2 Shin-Etsu Chemical - Lithium-Ion Battery Anode Market 13.2.3 Showa Denko K.K. - Lithium-Ion Battery Anode Market 13.2.4 Himadri Speciality Chemical Ltd.- Lithium-Ion Battery Anode Market 13.2.5 Tokai Carbon Co - Lithium-Ion Battery Anode Market 13.2.6 Guangdong Kaijin New Energy Technology Corp - Lithium-Ion Battery Anode Market 13.2.7 International Graphite - Lithium-Ion Battery Anode Market 13.2.8 Beiterui New Materials Group Co- Lithium-Ion Battery Anode Market 13.2.9 Epsilon Carbon Private Limited- Lithium-Ion Battery Anode Market 13.2.10 Pyrotek- Lithium-Ion Battery Anode Market 13.2.11 Kuraray Co - Lithium-Ion Battery Anode Market 13.2.12 Ecograf - Lithium-Ion Battery Anode Market 13.2.13 Talga Group - Lithium-Ion Battery Anode Market 13.2.14 Amsted Graphite Materials - Lithium-Ion Battery Anode Market
14 Appendix
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