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High-Performance Porous Carbon for Lithium Battery Silicon-Carbon Anode(SL-C105)

High-Performance Porous Carbon for Lithium Battery Silicon-Carbon Anode(SL-C105)

SL-C105 is a resin-derived porous carbon engineered for next-generation high-energy-density batteries. Produced through high-temperature carbonization and activation, it addresses the severe volume expansion of silicon anodes during charge/discharge cycles.

Unlike conventional carbon carriers with uneven pore structures, SL-C105 features a three-dimensionally interconnected porous framework with concentrated pore size distribution. This enables efficient nano-silicon adsorption and confines expansion within the pores, significantly improving cycle life. The resin-derived carbon layer also provides fast electron transport pathways.

More than a porous carbon, SL-C105 is an integrated "buffering and conductive" carrier platform tailor-made for silicon-carbon anodes.

  • 품목 번호 :

    SL-C105
  • 운송 항구 :

    Shanghai,Ningbo,Tianjin etc.
  • 리드타임 :

    3-5 days
  • 모습 :

    Black
  • 모양 :

    Powdery
  • Pore Volume :

    ≥1.05cm³/g
  • 설명

SL-C105 the High-Performance Porous Carbon for Lithium Battery

Silicon-Carbon Anode

 

SHANLI Resin-Based Porous Carbon

 

SHANLI SL-C95 offers higher pore volume (≥0.95 cm³/g) and specific surface area (≥1950 m²/g), with controllable micropore structure, zero macroporosity, and high crush strength (≥200 MPa), providing ample space and robust structural support for silicon deposition.

Designed for silicon-carbon anode systems with higher capacity requirements, it enables longer cycle life and higher energy density lithium-ion batteries.

 

Applications of Porous Carbon

 

 

Application Area Specific Scenario Key Features
Consumer Electronics Smartphones, Laptops High energy density for extended battery life, lightweight & thin design, increased cycle life
Power Batteries Electric vehicles, Power tools High rate capability for fast charge/discharge, increased cycle life, enhanced safety
Energy Storage Systems Home energy storage, Grid frequency regulation Ultra-long cycle life, cost control, wide temperature adaptability
Other Applications (Under Development)

 

 

Why Choose SHANLI?

 

 
High Purity Carbon Molecular Sieve Manufacturer
SHANLI is a professional manufacturer engaged in the research and development and production of carbon molecular sieve(CMS) and air separation series products. The production base locate in Chizhou, Anhui Province, covering about 40,000 square meters. The annual output of main product CMS is about 5,000 tons.
SHANLI owns the core preparation technology of CMS and is the first enterprise in China to use continuous furnace for production. It has passed the ISO9001,ISO14001 and ISO45001 certifications.

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Our Certificates

 

 

 

FAQ

 

 

Delivery&Packaging

 

 

 

Main Application

  1. High-Energy Consumer Electronics
    Enables high-capacity anodes using porous carbon for silicon-carbon anode, extending battery runtime for smartphones/laptops.

  2. EV Traction Batteries
    Resin-based porous carbon with high pore volume (≥0.85 cm³/g) boosts EV range and supports fast charging.

  3. Energy Storage Systems (ESS)
    Zero macroporosity carbon ensures high cycle life for residential ESS; pressure-resistant porous carbon structure supports grid frequency regulation.

  4. Power Tools
    Collapse-resistant carbon structure prevents capacity fade under high-current discharge, improving tool efficiency.

  5. Wearables
    Uniform micropore distribution delivers high energy density and mechanical flexibility for smartwatches and TWS earbuds.

  6. Aerospace
    High specific surface area carbon reduces battery weight for satellites/UAVs, enhancing flight time and payload.

  7. Specialty Power Sources
    Micropore carbon for battery anode ensures stable pulse discharge in medical implants and reliability for deep-sea detectors.

 

 

Caution

1. It should be sealed to avoid of contamination and adsorption of water or other gas and vapors.

2. Storage in a dry warehouse is recommended.

 

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관련 제품

Resin-Based Porous Carbon for Silicon-Carbon Anode Carrier(SL-C85)

Shanli SL-C85 is a resin-based porous carbon developed for silicon-carbon anode applications. Produced through high-temperature carbonization and activation, it features a uniform microporous structure with zero macroporosity and a pore volume ≥0.85 cm³/g. The material resists collapse and deformation under pressure, providing stable mechanical support for silicon deposition and long cycle life.

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Premium Porous Carbon for Silicon-Carbon Anode(SL-C95)

Shanli SL-C95 is a high-performance resin-based porous carbon engineered for next-generation silicon-carbon anodes. With a controlled microporous architecture, higher pore volume, and greater specific surface area, it offers expanded internal space for silicon loading. The structure maintains zero macroporosity and remains non-collapsing under pressure, ensuring robust support and improved cycling stability.

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High-Performance Porous Carbon for Lithium Battery Silicon-Carbon Anode(SL-C105)

SL-C105 is a resin-derived porous carbon engineered for next-generation high-energy-density batteries. Produced through high-temperature carbonization and activation, it addresses the severe volume expansion of silicon anodes during charge/discharge cycles. Unlike conventional carbon carriers with uneven pore structures, SL-C105 features a three-dimensionally interconnected porous framework with concentrated pore size distribution. This enables efficient nano-silicon adsorption and confines expansion within the pores, significantly improving cycle life. The resin-derived carbon layer also provides fast electron transport pathways. More than a porous carbon, SL-C105 is an integrated "buffering and conductive" carrier platform tailor-made for silicon-carbon anodes.

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Enhanced Pore Volume Porous Carbon for Si-C Anode Carrier(SL-C120)

SL-C120 is a resin-based porous carbon produced through high-temperature carbonization and activation. Designed as a high-performance carrier for silicon-carbon anodes, it offers enhanced pore volume and structural stability for advanced lithium-ion battery applications.

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Qianjiang Industrial Zone, Guichi district chizhou city, Anhui province, China
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