The global nanowire battery market attained a value of around USD 50 million in 2019. The industry is further expected to grow at a CAGR of 35% during the forecast period of 2020-2025. The global nanowire battery market is being driven by the thriving consumer electronics industry, particularly in emerging economies, the growing demand for high charging capacity batteries, and the increased investment in R&D activities by automotive and other industries.
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Properties and Applications
Nanowires can be characterised as structures with a diameter of tens or less nanometres. By using nanowires, the surface area of one or both of the regular battery’s electrodes is increased; then the battery is called a nanowire battery. A mixture of lithium-ion batteries replaces the traditional graphite anodes used in batteries. The model requires anodes of stainless steel lined with nanowire of silicon.
The global nanowire battery market can be broadly categorised based on its components, materials, industry, and regions.
The EMR report looks into the regional nanowire battery markets like North America, Latin America, Europe, the Middle East and Africa, and the Asia Pacific.
Electronic devices such as laptops, smartphones, and other gadgets with nanowire batteries last for a longer duration than conventional batteries. This is one of the primary advantages of the nanowire battery. Nanowire batteries produce ten times more electricity than current batteries and also get charged faster. Nanowires are also used in solar cell because it helps absorb and retain more sunlight creating a resonance effect, which increases the efficiency of solar cells. The research activities are being carried out, with regards to the retention of sunlight to optimise the efficiency of solar cells. This is expected to boost the nanowire battery market globally. Nanowire batteries are likely to transform the electronics market in the next few years owing to their distinctive characteristics of faster charging and longer durability.
The report presents a detailed analysis of the following key players in the global nanowire battery market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
The EMR report gives an in-depth insight into the nanowire battery market by providing a SWOT analysis as well as an analysis of Porter’s Five Forces model.
Key Questions Answered in the Market Report:
1.1 Objectives of the Study
1.1.1 Research Objective
1.1.2 Key Findings of the Report
2 Research Methodology
2.1 Data Extraction
2.2 Data Corroboration
2.3 Market Structure
2.5 Market Models
3.1 Market Outlook
3.2 Market Scope and Segmentation
3.3 Additional Insights
4 Executive Summary
4.1 Key Market Developments
4.2 Market Analysis
4.3 Key Players
4.4 Cost Structure
4.5 Market Revenue and Growth
5 Market Dynamics
5.1 Market Driver Analysis
5.2 Market Restraint Analysis
5.3 Industry Challenges
5.4 Industry Opportunities
6 Global Nanowire Battery Market Analysis
6.1 Global Nanowire Battery Historical Market (2015-2019) & Forecast (2020-2025)
6.2 Global Nanowire Battery Market Breakup by Components
6.2.1 Common Cathode Materials
22.214.171.124 Lithium Iron Phosphate
126.96.36.199 Lithium Cobalt Oxide
188.8.131.52 Lithium Nickel Manganese Cobalt
184.108.40.206 Lithium Nickel Cobalt Aluminum
6.2.2 Common Anode Materials
6.3 Global Nanowire Battery Market Breakup by Components: Historical Market (2015-2019) & Forecast (2020-2025)
6.3.1 Common Cathode Materials
220.127.116.11 Lithium Iron Phosphate
18.104.22.168 Lithium Cobalt Oxide
22.214.171.124 Lithium Nickel Manganese Cobalt
126.96.36.199 Lithium Nickel Cobalt Aluminum
6.3.2 Common Anode Materials
6.4 Global Nanowire Battery Market Breakup by Material
6.4.3 Transition Metal Oxides
6.5 Global Nanowire Battery Market Breakup by Material: Historical Market (2015-2019) & Forecast (2020-2025)
6.5.3 Transition Metal Oxides
6.6 Global Nanowire Battery Market by Industry
6.6.1 Consumer Electronics
188.8.131.52 Digital Cameras
184.108.40.206 Battery Electric Vehicles (BEV)
220.127.116.11 Plug-In Hybrid Electric Vehicles (PHEVs)
18.104.22.168 Power Storage
6.6.5 Medical Devices
6.7 Global Nanowire Battery Market by Industry: Historical Market (2015-2019) & Forecast (2020-2025)
6.7.1 Consumer Electronics
22.214.171.124 Digital Cameras
126.96.36.199 Battery Electric Vehicles (BEV)
188.8.131.52 Plug-In Hybrid Electric Vehicles (PHEVs)
184.108.40.206 Power Storage
220.127.116.11 Medical Devices
6.8 Global Nanowire Battery Market by Region
6.8.1 North America
18.104.22.168 United States of America
22.214.171.124 United Kingdom
6.8.3 Asia Pacific
6.8.4 Latin America
6.8.5 Middle East & Africa
126.96.36.199 Saudi Arabia
188.8.131.52 United Arab Emirates
184.108.40.206 South Africa
6.9 Global Nanowire Battery Market by Region: Historical Market (2015-2019) & Forecast (2020-2025)
6.9.1 North America
220.127.116.11 United States of America
18.104.22.168 United Kingdom
6.9.3 Asia Pacific
6.9.4 Latin America
6.9.5 Middle East & Africa
22.214.171.124 Saudi Arabia
126.96.36.199 United Arab Emirates
188.8.131.52 South Africa
7 SWOT Analysis
8 Porter’s Five Forces Analysis
8.2 Buyer’s Power
8.3 Supplier’s Power
8.4 New Entrants
8.5 Degree of Rivalry
9 Competitive Landscape & Supplier Analysis
9.1.1 Company Overview
9.1.2 Financial Analysis
9.2 Sila Nanotechnologies
9.2.1 Company Overview
9.2.2 Financial Analysis
9.3 Oned Material
9.3.1 Company Overview
9.3.2 Financial Analysis
9.4.1 Company Overview
9.4.2 Financial Analysis
9.5 NEI Corporation
9.5.1 Company Overview
9.5.2 Financial Analysis
9.6 XG Sciences
9.6.1 Company Overview
9.6.2 Financial Analysis
9.7 LG Chem (051910 (KRX))
9.7.1 Company Overview
9.7.2 Financial Analysis
10 Events and Developments
Additional Customization Available:
11 Feedstock Analysis
12 Procurement Strategy
12.1 Value Chain Analysis
12.2 Contract Terms
12.3 Buying and Sourcing Trends
12.4 Storage and Warehousing
12.5 Certifications and Regulations
12.6 Risk Factors
13 Trade Data Analysis
13.1 Major Exporting Countries: By Value and Volume
13.2 Major Importing Countries: By Value and Volume
14 Manufacturing Process
14.1 Detailed Process Flow
14.2 Operations Involved
14.3 Mass Balance
15 Cost Analysis and Project Economics
15.1 Land, Location and Site Development
15.3 Plant Machinery
15.4 Cost of Raw Material
15.9 Other Capital Investment
16 Production Cost Analysis
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