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The current preparation methods of CNT mainly include chemical vapor deposition (CVD), laser evaporation, graphite arc method, and hydrothermal method. However, due to the shortcomings of high cost and difficulty in industrial production for the latter three, CNT manufacturers use choose to use CVD. Carbon nanotubes (CNTs), including multi-walled CNTs (MWCNTs) and single-walled CNTs (SWCNTs), are employed as conductive additives in lithium ion batteries. CNT paste is a new highly efficient conductive agent for Li-ion Battery, which can replace the traditional conductive agents such as carbon black, graphite & carbon fibre. It has some excellent characteristics of high LD ratio, big SSA value & low volume resistivity, can be used in various specifications of electrode materials, such as LFP, LCO, LMN, NCM, graphite, etc.
The global market for Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent is estimated to increase from US$ 576.4 million in 2021 to reach US$ 6261.8 million by 2028, exhibiting a CAGR of 40.6% during 2022-2028. Keeping in mind the uncertainties of COVID-19 and Russia-Ukraine War, we are continuously tracking and evaluating the direct as well as the indirect influence of the pandemic on different end use sectors. These insights are included in the report as a major market contributor.
Global key manufacturers of Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent include Jiangsu Cnano Technology, OCSiAI, SUSN Nano (Cabot Corporation), Qingdao Haoxin New Energy, Wuxi Dongheng, etc. Global top five manufacturers hold a share about 70%. Asia-Pacific is the largest market of Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent, holds a share over 75%. In terms of product, the Multi-walled Carbon Nanotubes (MWCNTs) holds a share of over 99%. And in terms of application, the largest application field is Lithium-Ion Battery for EVs, with a share of over 60%.
Report Coverage
This latest report provides a deep insight into the global Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market covering all its essential aspects. This ranges from a macro overview of the market to micro details of the market size, competitive landscape, development trend, niche market, key market drivers and challenges, value chain analysis, etc.
This report aims to provide a comprehensive picture of the global Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market, with both quantitative and qualitative data, to help readers understand how the Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market scenario changed across the globe during the pandemic and Russia-Ukraine War.
The base year considered for analyses is 2021, while the market estimates and forecasts are given from 2022 to 2028. The market estimates are provided in terms of revenue in USD millions and volume in Tons.
Market Segmentation:
The study segments the Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market and forecasts the market size by Type (Multi-walled Carbon Nanotubes (MWCNTs) and Single-walled Carbon Nanotubes (SWCNTs),), by Application (Lithium-Ion Battery for EVs, Lithium-Ion Battery for 3C Products and Lithium-Ion Battery for Energy Storage Systems,), and region (APAC, Americas, Europe, and Middle East & Africa).
Segmentation by type
Multi-walled Carbon Nanotubes (MWCNTs)
Single-walled Carbon Nanotubes (SWCNTs)
Segmentation by application
Lithium-Ion Battery for EVs
Lithium-Ion Battery for 3C Products
Lithium-Ion Battery for Energy Storage Systems
Segmentation by region
Americas
United States
Canada
Mexico
Brazil
APAC
China
Japan
Korea
Southeast Asia
India
Australia
Europe
Germany
France
UK
Italy
Russia
Middle East & Africa
Egypt
South Africa
Israel
Turkey
GCC Countries
Major companies covered
Jiangsu Cnano Technology
SUSN Nano (Cabot Corporation)
OCSiAI
Qingdao Haoxin New Energy
Wuxi Dongheng
LG Chem
Shenzhen Jinbaina Nanotechnology
Nanocyl
Kumho Petrochemical
ANP(Advanced Nano Products)
Showa Denko
Arkema
Dongjin Semichem
Toyo Color
Shenzhen Nanotech Port
Chapter Introduction
Chapter 1: Scope of Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent, Research Methodology, etc.
Chapter 2: Executive Summary, global Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market size (sales and revenue) and CAGR, Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market size by region, by type, by application, historical data from 2017 to 2022, and forecast to 2028.
Chapter 3: Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent sales, revenue, average price, global market share, and industry ranking by company, 2017-2022
Chapter 4: Global Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent sales and revenue by region and by country. Country specific data and market value analysis for the U.S., Canada, Europe, China, Japan, South Korea, Southeast Asia, India, Latin America and Middle East & Africa.
Chapter 5, 6, 7, 8: Americas, APAC, Europe, Middle East & Africa, sales segment by country, by type, and type.
Chapter 9: Analysis of the current market trends, market forecast, opportunities and economic trends that are affecting the future marketplace
Chapter 10: Manufacturing cost structure analysis
Chapter 11: Sales channel, distributors, and customers
Chapter 12: Global Lithium-Ion Battery CNT (Carbon Nano Tube) Conductive Agent market size forecast by region, by country, by type, and application.
Chapter 13: Comprehensive company profiles of the leading players, including Jiangsu Cnano Technology, SUSN Nano (Cabot Corporation), OCSiAI, Qingdao Haoxin New Energy, Wuxi Dongheng, LG Chem, Shenzhen Jinbaina Nanotechnology, Nanocyl and Kumho Petrochemical, etc.
Chapter 14: Research Findings and Conclusion
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