Graphene-based Supercapacitors Market Size, Share, By Type (Electrical Double Layer Capacitors, Pseudocapacitor, Asymmetric Supercapacitor, and Others), By Application (Automotive, Industrial Power Systems, Aerospace & Military, Consumer Electronics, and Others), and By Region - Trends, Analysis, and Forecast till 2034
Graphene-based supercapacitors are advanced energy storage devices that utilize graphene, a single layer of carbon atoms arranged in a two-dimensional honeycomb lattice, as their primary material. Known for its exceptional electrical conductivity, high surface area, and mechanical strength, graphene enable supercapacitors to store and deliver energy rapidly, outperforming traditional capacitors and batteries in terms of power density and charge-discharge cycles. The rising demand for electric vehicles (EVs) globally is expected to boost market growth during the forecast period.
Graphene-based Supercapacitors Market Report Highlights:
By 2034, the graphene-based supercapacitors market size is expected to be USD 21.2 billion.
It was valued at USD 3.9 billion in 2024.
The market is projected to grow at a CAGR of 20.5% during the projected period.
North America is the leading region in the market.
Asia Pacific is expected to witness fastest growth in the market during the forecast period.
The double layer capacitors type segment is expected to lead the market during the estimated period.
By application, the automotive segment is holding the largest market share.
Graphene-based Supercapacitors Market Key Highlights:
In May 2024, Australian start-up EnyGy International has been named in the top 10 new supercapacitor companies by the highly reputable innovation intelligence platform. EnyGy’s proprietary graphene-based nanotechnology is drawing worldwide attention for its capability to significantly increase the energy density of supercapacitors. The enyGy team is profoundly focused on the technological advancement and commercialization related to four of the current industry trends highlighted by StartUs Insights: high-voltage supercapacitors, graphene-based materials, nanotechnology, and hybrid supercapacitors.
In November 2020, Elsevier B.V. published a research article stating that graphene-based materials are being investigated extensively for use as active electrode materials in energy storage and conversion devices, particularly supercapacitors (SCs). The key features that make them reliable and helpful conduits for charge transport are their large electrochemically active surface area, hierarchical porous structure, superior compressibility, high mechanical stability, and great conductivity.
Graphene-based Supercapacitors Market Report Analysis:
High-Performance Supercapacitors Based on Graphene/Activated Carbon Hybrid Electrodes Prepared via Dry Processing –
A supercapacitor fills the gap between batteries and traditional capacitors with its simultaneously superior power density and energy density, and it has a wide range of commercial applications in microgrids, electrical equipment, consumer electronics, and many other fields. For commercial supercapacitors, the most used electrode material is activated carbon because of its large specific surface area and low cost.
For academic research, graphene has attracted extensive attention in the field of supercapacitors due to its special two-dimensional material properties. As an electrode material, graphene has multiple contributions to the energy storage of supercapacitors: firstly, it has a higher specific surface area than traditional activated carbon, providing a richer microscopic interface for energy storage; secondly, it has a good electrochemical activity, which can realize a greater energy storage density through the pseudocapacitive effect and other electrochemical reactions; and thirdly, it has a good electrical conductivity, which reduces the energy loss of the supercapacitor itself.
As a result, many researchers have focused on next-generation supercapacitors based on graphene electrodes and successfully fabricated many device prototypes with great performance in the laboratory environment.
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Stay informed on the latest trends in the Graphene-based Supercapacitors Market, including key drivers, challenges, opportunities, and barriers.
Specialty Polyamides Market Report Analysis:
Features of Kiosk Enabling Health Management System:
For instance, according to the previous article published by Arkema, the article claimed that in China, at its Zhangjiagang site (Jiangsu Province) specialized in biosourced specialty polyamides, Arkema has increased its compounding capacities and bought stream two production lines to manufacture polyamide 11 in addition to polyamide 10 which was already produced on the site. Rilsan polyamide 11’s outstanding properties in terms of resistance to impact and to chemicals, light weight and easy processing make it a choice material to fulfil our customers’ specific needs in the automotive, consumer electronics and sports sectors.
Segmentation:
By Type:
Electrical Double Layer Capacitors
Pseudocapacitor
Asymmetric Supercapacitor
Others
By Application:
Automotive
Industrial Power Systems
Aerospace & Military
Consumer Electronics
Others
By Region:
North America
U.S.
Canada
Europe
Germany
U.K.
France
Russia
Italy
Rest of Europe
Asia Pacific
China
India
Japan
South Korea
Rest of Asia Pacific
Latin America
Brazil
Mexico
Rest of Latin America
Middle East & Africa
GCC
Israel
South Africa
Rest of Middle East & Africa
Graphene-based Super Capacitors Market Competitive Landscape:
Nanotech Energy, Inc.
Skeleton Technologies
Graphene Flagship
International Graphene Institute
Heraeus Holding GmbH
Enevate Corporation
Imprint Energy, Inc.
Elcora Advanced Materials Corp.
Grafoid Inc.
American Battery Technology Company
Sila Nanotechnologies
Innovnano
AGC Inc.
Aixtron SE
Versarien plc
Key Questions Answered in This Report
1. What was the size of the Graphene-based Supercapacitors Market in 2024?
2. What is the expected growth rate of the Graphene-based Supercapacitors Market during 2025-2035?
3. What are the key factors driving the Graphene-based Supercapacitors Market?
4. What is the breakup of the Graphene-based Supercapacitors Market based on the distribution channel?
5. What are the key regions in the Graphene-based Supercapacitors Market?
6. Who are the key players/companies in the Graphene-based Supercapacitors Market?
7. What are the drivers, restraints, and opportunities in the Graphene-based Supercapacitors Market?
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