公司产品​

Product

锂凰新一代硅碳负极材料,采用多孔碳骨架负载纳米硅构型,融合前沿CVD梯度包覆与界面改性工艺,从微观尺度重塑界面结合力,攻克了硅基材料循环体积膨胀的行业痛点。
凭借高容量、高首效与长循环的卓越综合性能,锂凰技术近期成功助力实现了 1000Wh/L(ED1000)超高体积能量密度。目前,锂凰硅碳产品正为 400-450Wh/kg 高比能电池体系提供底层支撑,深度赋能高端消费电子、新能源汽车及大型储能系统的跨越式发展。
锂凰新一代硅碳负极材料,采用多孔碳骨架负载纳米硅构型,融合前沿CVD梯度包覆与界面改性工艺,从微观尺度重塑界面结合力,攻克了硅基材料循环体积膨胀的行业痛点。
凭借高容量、高首效与长循环的卓越综合性能,锂凰技术近期成功助力实现了 1000Wh/L(ED1000)超高体积能量密度。目前,锂凰硅碳产品正为 400-450Wh/kg 高比能电池体系提供底层支撑,深度赋能高端消费电子、新能源汽车及大型储能系统的跨越式发展。

公司产品​

Product

锂凰新一代硅碳负极材料,采用多孔碳骨架负载纳米硅构型,融合前沿CVD梯度包覆与界面改性工艺,从微观尺度重塑界面结合力,攻克了硅基材料循环体积膨胀的行业痛点。
凭借高容量、高首效与长循环的卓越综合性能,锂凰技术近期成功助力实现了 1000Wh/L(ED1000)超高体积能量密度。目前,锂凰硅碳产品正为 400-450Wh/kg 高比能电池体系提供底层支撑,深度赋能高端消费电子、新能源汽车及大型储能系统的跨越式发展。
Phoelix Tech’s next-generation silicon-carbon anode material utilizes a core structural configuration of nano-silicon embedded within a porous carbon framework. By integrating cutting-edge CVD gradient coating and interface modification processes, it reconstructs interfacial adhesion at the microscale, successfully conquering the industry-wide challenge of volume expansion during silicon cycling.
Leveraging an outstanding comprehensive performance characterized by high specific capacity, high initial coulombic efficiency (ICE), and extended cycle life, Phoelix Tech’s technology has recently enabled the breakthrough achievement of a 1000 Wh/L (ED1000) ultra-high volumetric energy density. Currently, Phoelix Tech’s silicon-carbon products are providing the foundational support for 400-450 Wh/kg high-energy-density battery systems, comprehensively empowering leapfrog advancements in premium consumer electronics, new energy vehicles, and large-scale energy storage systems.

硅碳负极 / 凰 · 启明

硅碳负极 /

凰 · 启明

Silicon-Carbon Anode Material / phoelix · Aurora

1.5V容量

首次效率

粒径D50

BET比表

振实密度

 / Reversible Capacity

 / Initial Coulombic Efficiency

 / Particle Size (D50)

 / BET Surface Area

 / Tap Density

≥ 1850 mAh/g

≥ 92.0%

7.5 ± 1.0 μm

2.0 ± 0.5 m²/g

0.93 ± 0.2 g/cm³

硅碳负极 / 凰 · 展翼

硅碳负极 /

凰 · 展翼

Silicon-Carbon Anode Material / phoelix · Wingspan

1.5V容量

首次效率

粒径D50

BET比表

振实密度

 / Reversible Capacity

 / Initial Coulombic Efficiency

 / Particle Size (D50)

 / BET Surface Area

 / Tap Density

≥ 2050 mAh/g

≥ 93.0%

7.5 ± 1.0 μm

2.0 ± 0.5 m²/g

0.93 ± 0.2 g/cm³

硅碳负极 / 凰 · 擎岳

硅碳负极 /

凰 · 擎岳

Silicon-Carbon Anode Material / phoelix · Dynamo

1.5V容量

首次效率

粒径D50

BET比表

振实密度

 / Reversible Capacity

 / Initial Coulombic Efficiency

 / Particle Size (D50)

 / BET Surface Area

 / Tap Density

≥ 2250 mAh/g

≥ 93.0%

7.5 ± 1.0 μm

2.0 ± 0.5 m²/g

0.96 ± 0.2 g/cm³

硅碳负极 / 凰 · 凌云

硅碳负极 /

凰 · 凌云

Silicon-Carbon Anode Material / phoelix · Skyward

1.5V容量

首次效率

粒径D50

BET比表

振实密度

 / Reversible Capacity

 / Initial Coulombic Efficiency

 / Particle Size (D50)

 / BET Surface Area

 / Tap Density

≥ 2500 mAh/g

≥ 94.0%

8.0 ± 1.0 μm

2.0 ± 0.5 m²/g

0.98 ± 0.2 g/cm³

硅碳负极 / 凰 · 宇极

硅碳负极 /

凰 · 宇极

Silicon-Carbon Anode Material / phoelix · Eternity

1.5V容量

 / Reversible Capacity

≥ 2800 mAh/g

  • 前沿技术验证
  • 全固态电池/高端人形机器人等未来场景

核心科技

Core Technology

多孔碳微纳米孔域精准调控
构筑弹性“呼吸”空间
Precisely engineered porous carbon micro/nano domains creating an elastic “buffer” space

Part.01

等离子体增强下的双原子层“自驱动”硅沉积
实现原子级均匀分布
Plasma-enhanced, self-driven silicon deposition for atomic-scale uniform distribution

Part.02

氮掺杂少层碳包覆界面工程
构建高韧性导电网络
Nitrogen-doped few-layer carbon coating interface engineering for constructing a high-toughness conductive network

Part.03