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Silicon-Carbon Anode Project Granted $730,000, With Sunrise New Energy as a Key Participant

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Rhea-AI Summary

Sunrise New Energy (NASDAQ: EPOW) announced on Dec 9, 2025 that its Guizhou Provincial Science and Technology Major Project, titled "Key Technologies and Engineering of Novel Silicon-Carbon Anode Materials for Lithium-ion Batteries," passed a successful mid-term evaluation and was awarded $730,000 to advance next-stage development.

The project targets solutions for volume expansion and cycle stability in silicon-carbon anodes and aims to expedite pilot optimization and commercial readiness; the company said the funding validates its technical roadmap and R&D execution.

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Positive

  • $730,000 grant awarded on Dec 9, 2025
  • Mid-term review recognized material innovation and process engineering
  • Funding allocated to next-stage development and pilot optimization

Negative

  • None.
Argus Dec 9 session
+1.94% close to close Open Argus
Details

News Market Reaction – EPOW

On Dec 9, the day this news came out, EPOW closed 1.94% above the previous close.

Data tracked by StockTitan Argus for the Dec 9 session.

Key Figures

Silicon-carbon grant: $730,000 Solid-state pilot funding: USD 345,000 Supply contract value: USD 30 million +5 more
Silicon-carbon grant
$730,000
Funding for next-stage development of silicon-carbon anode project
Solid-state pilot funding
USD 345,000
Guizhou Provincial funding for solid-state battery pilot project
Supply contract value
USD 30 million
One-year contract for synthetic graphite anode materials
Contract volume
10,000 tons
Synthetic graphite anode materials to Guizhou Jiaying
Private placement proceeds
$5.6 million
Reg S private placement at $0.80 per share and one-half warrant
Public offering (Oct 3)
$1,650,000
Gross proceeds from Class A share offering at $0.55
Public offering (Sep 23)
$550,000
Gross proceeds from Class A share offering at $0.55
JV initial capital
US$1.0 million
Capital for Alchemistica Inc. U.S. expansion JV

Historical Context

5 past events · Latest: Dec 05
5 events
  1. Dec 05

    Patent grant

    24h Move
    -7.0%

    Invention patent for improving fast-charging silicon-carbon composite anodes.

  2. Dec 04

    Patent grant

    24h Move
    +6.0%

    Patent for lithium cerate–coated anode material enhancing solid-state performance.

  3. Dec 04

    Project funding

    24h Move
    +6.0%

    Award of USD 345,000 for solid-state battery and key materials pilot.

  4. Dec 02

    Supply contract

    24h Move
    -0.9%

    One-year, USD 30 million contract for 10,000 tons of graphite anodes.

  5. Oct 22

    AI patent

    24h Move
    +1.9%

    Patent for AI-driven multivariable particle size control in graphite production.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Key Terms

silicon-carbon anode materials, lithium-ion batteries, energy density, volume expansion, +1 more
5 terms
silicon-carbon anode materials technical
"Key Technologies and Engineering of Novel Silicon-Carbon Anode Materials for Lithium-ion Batteries"
Silicon-carbon anode materials are composite battery components that mix silicon particles with carbon to form the negative electrode in rechargeable lithium-ion batteries. They matter to investors because they can store much more energy than traditional graphite anodes—imagine fitting a larger suitcase into the same trunk—potentially improving electric vehicle range and device runtime, but they can also raise manufacturing complexity and cost, affecting supplier and automaker margins and adoption timelines.
lithium-ion batteries technical
"Silicon-carbon anode materials for Lithium-ion Batteries has been awarded $730,000"
Rechargeable lithium-ion batteries are lightweight, high-energy storage cells that use lithium ions moving between electrodes to store and release electricity, like a refillable fuel tank for electronic devices and electric vehicles. Investors care because they power a wide range of products from phones to cars and grid systems, so improvements, costs, supply chain constraints, or safety issues can directly affect manufacturers’ profits, product demand, and capital expenditure plans.
energy density technical
"recognized globally as a critical pathway to achieving higher energy density in next-generation"
Energy density measures how much energy is stored in a material or object relative to its size or weight. For example, a small, lightweight battery with high energy density can store a lot of power, making it more efficient and longer-lasting. Investors pay attention to energy density because it influences the performance, cost, and practicality of energy sources and storage solutions.
volume expansion technical
"focused on overcoming industry-wide challenges such as volume expansion and cycle stability"
Volume expansion is an increase in the number of units a business produces, ships or sells (or, in trading context, an increase in share turnover), measured in physical quantity rather than dollar value. It matters to investors because selling or making more units often spreads fixed costs, lowers the cost per unit and signals stronger demand or market share, which can boost profit margins and future cash flow — like baking more cookies and paying less per cookie.
cycle stability technical
"challenges such as volume expansion and cycle stability, aiming to accelerate the commercialization"
Cycle stability measures how consistently a product, treatment, or process maintains its performance after repeated uses or operational cycles. For investors, it matters because high cycle stability means lower replacement or failure rates, steadier product performance, lower long-term costs and fewer regulatory or warranty risks—similar to choosing a lightbulb that stays bright after thousands of on/off cycles rather than one that quickly dims or fails.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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DOVER, USA, Dec. 09, 2025 (GLOBE NEWSWIRE) -- Sunrise New Energy Co., Ltd. (“Sunrise”, the “Company”, “we” or “our”) (NASDAQ: EPOW) today announced the successful mid-term evaluation of a Guizhou Provincial Science and Technology Major Project it is undertaking. The project, titled "Key Technologies and Engineering of Novel Silicon-Carbon Anode Materials for Lithium-ion Batteries," has been awarded $730,000, which is allocated to advance the next-stage development of the silicon-carbon anode project.

Silicon-carbon anode materials are recognized globally as a critical pathway to achieving higher energy density in next-generation lithium-ion batteries. This major project is focused on overcoming industry-wide challenges such as volume expansion and cycle stability, aiming to accelerate the commercialization of this advanced material technology. In the mid-term assessment, Sunrise demonstrated substantial progress in material innovation and process engineering, earning high recognition from the expert review panel. The receipt of this funding validates our technical roadmap and R&D execution capabilities in this strategic frontier.

“The successful mid-term review  underscores our leadership in next-generation battery materials,” said Haiping Hu, Founder and CEO of Sunrise. “We are committed to deploying this funding to expedite the pilot optimization and commercial readiness of our silicon-carbon anode technology, thereby strengthening our position in the global high-performance battery materials market.”

About Sunrise New Energy Co., Ltd

Headquartered in Zibo, Shandong Province, China, Sunrise New Energy Co., Ltd., through its joint venture, is engaged in the manufacturing and sale of graphite anode material for lithium-ion batteries. The Company's joint venture has completed the construction of a manufacturing facility with a production capacity of 50,000 tons in Guizhou Province, China. The plant runs on inexpensive electricity from renewable sources, which helps to make Sunrise New Energy a low-cost and low–environmental-impact producer of graphite anode material. Mr. Haiping Hu, the founder and CEO of the Company, is a major pioneer for the graphite anode industry in China starting from 1999. The Company’s management team is also composed of experts with years of experiences and strong track-records of success in the graphite anode industry. In addition, the Company also operates a knowledge sharing platform in China. For further information, please visit the Company’s website at www.sunrisenewenergy.com.

Forward-looking statement

Certain statements in this press release regarding the Company's future expectations, plans and prospects constitute forward-looking statements as defined by Private Securities Litigation Reform Act of 1995. Forward-looking statements include statements about plans, goals, objectives, strategies, future events, expected results, assumptions and any other factual statements that have not occurred. Any words that refer to "may", "will", "want", "should", "believe", "expect", "expect", "estimate", "estimate" or similar non-factual words, shall be regarded as forward-looking statements. Due to various factors, the actual results may differ materially from the historical results or the contents expressed in these forward-looking statements. These factors include, but are not limited to, the company's strategic objectives, the company's future plans, market demand and user acceptance of the company's products or services, technological updates, economic trends, the company's reputation and brand, the impact of industry competition and bidding, relevant policies and regulations, the ups and downs of China's macroeconomic conditions, the relevant international market conditions, and other related risks and assumptions disclosed in the Company’s Annual Report on Form 20-F published on the SEC’s website. In view of the above and other related reasons, we urge investors to visit the SEC’s website and consider other factors that may affect the Company's future operating results. The Company is under no obligation to make public amendments to changes in these forward-looking statements unless required by law.

For more information, please contact:

The Company:
IR Department
Email: IR@sunrisenewenergy.com
Phone: +86 4009919228


FAQ

AI-generated questions and answers. How Rhea-AI works. Not financial advice.

What did Sunrise New Energy (EPOW) announce on December 9, 2025?

Sunrise announced a successful mid-term evaluation and a $730,000 award for its silicon-carbon anode project.

How will the $730,000 awarded to EPOW be used?

The funding is allocated to advance next-stage development, pilot optimization and commercial readiness of silicon-carbon anodes.

What technical challenges is EPOW's silicon-carbon anode project addressing?

The project focuses on overcoming volume expansion and cycle stability challenges in silicon-carbon anode materials.

Did Sunrise report progress in its silicon-carbon anode R&D?

Yes; the company said the mid-term assessment showed substantial progress in material innovation and process engineering.

Does the announcement affect Sunrise New Energy's commercialization timeline?

The company stated the funding will be used to expedite pilot optimization and commercial readiness, indicating advancement toward commercialization.

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