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Porous Carbon Product for Silicon Carbon
SQ Group has successfully developed porous carbon materials for silicon carbon, positioning its technology as a global leader. It boasts a uniform range of spherical particle size, controllable pore structure, and high retention of micropores, enabling enhanced homogeneity and consistency in silane deposition.
Porous Carbon Product for Silicon Carbon
Introduction
SQ Group has successfully developed porous carbon materials for silicon carbon, positioning its technology as a global leader. It boasts a uniform range of spherical particle size, controllable pore structure, and high retention of micropores, enabling enhanced homogeneity and consistency in silane deposition.
Specification
Product Indicator | ZLD Series | Testing Standard | |||||
ZLD-0 | ZLD-1 | ZLD-2 | ZLD-3 | ||||
Pore Volume (cm3 /g) | Total Pore Volume for Single Point Adsorption (±0.025) | 0.625 | 0.725 | 0.825 | 0.925 | GB/T 19587-2017 (JWGB SCI. & TECH.) |
|
Total Micropore Volume (HK) (±0.025) |
0.55 | 0.65 | 0.75 | 0.85 | |||
Percentage of Micropores (%) (±1) |
≥90.0 | ||||||
Surface Area (m2 /g) |
BET Multi-Point Specific Surface Area |
1400-1600 | 1600-1800 | 1800-2000 | 2000-2200 | ||
Pore Size (nm) | Average Pore Size for Adsorption (±0.1) | 1.7 | |||||
Particle Size (μm) | Dv(10) | Dv(50) | Dv(90) | Dv(99) | Dv(100) | GB/T 24533-2019(Malvern) | |
4.00-6.00 | 7.00-8.00 | 13.0-15.0 | 17.0-20.0 | ≤ 25.0 | |||
Dn(10) | Dn(50) | Dn(90) | Dn(99) | Dn(100) | |||
≥ 3.00 | 4.00-6.00 | 7.00-9.00 | 11.0-14.0 | ≤ 25.0 | |||
Tap Density (g/cm3 ) | ≥ 0.45 | GB/T 24533-2019 | |||||
Powder Compact Density (g/cm3 ) | ≥ 0.80 | ||||||
Powder Conductivity (S/mm) | ≥ 3.0 | ||||||
Magnetic Material (Fe+Cr+Ni+Zn) (ppm) | ≤ 10 | GB/T 24533-2019 | |||||
Oxygen-Containing Functional Group (mmol/g) | ≤ 0.5 | GB/T 38114-2019 | |||||
PH | 6-9. | SQJT-D1-FF-002 | |||||
Ash Content (%) | ≤ 0.2 | GB/T 3521-2008 | |||||
Water Content (%) | ≤ 0.2 | GB/T 24533-2019 | |||||
SEM | ![]() |
Features
Spherical particles with a dense internal structure and excellent resistance to swelling;
High microporous retention, controlled and adjustable pore volume;
Uniform and adjustable pore size range for more uniform deposition;
Narrow particle size range and few fine particles.
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