BET Surface Area & Porosity Analysis

Parameter Specification
Technique BET Surface Area Analysis
Measurement Principle Gas adsorption (typically N₂ at 77 K)
Specific Surface Area m²/g
Pore Size Range Micro-, meso-, and macro-porosity
Pore Size Analysis BJH / DFT methods (optional)
Total Pore Volume Yes
Adsorption–Desorption Isotherms Yes
Sample Type Powders, granules, porous solids
Sample Mass Typically 50–500 mg (material-dependent)
Degassing Vacuum / temperature-controlled degassing
Information Obtained Surface area, pore size distribution, pore volume
Typical Use Cases Catalysts, energy materials, porous ceramics, oxides
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Description

Advanced BET analysis service for quantitative measurement of specific surface area, pore volume, and pore size distribution of materials. BET provides critical insight into how much of a material is actually accessible and active for adsorption, catalysis, energy storage, and surface-driven processes.

Key Applications

  • Surface area and porosity evaluation

  • Catalyst and adsorbent characterization

  • Energy materials and porous oxide analysis

  • Quality control for powders and granulates

  • Performance correlation for surface-driven materials

Specifications

Parameter Specification
Technique BET Surface Area Analysis
Measurement Principle Gas adsorption (typically N₂ at 77 K)
Specific Surface Area m²/g
Pore Size Range Micro-, meso-, and macro-porosity
Pore Size Analysis BJH / DFT methods (optional)
Total Pore Volume Yes
Adsorption–Desorption Isotherms Yes
Sample Type Powders, granules, porous solids
Sample Mass Typically 50–500 mg (material-dependent)
Degassing Vacuum / temperature-controlled degassing
Information Obtained Surface area, pore size distribution, pore volume
Typical Use Cases Catalysts, energy materials, porous ceramics, oxides

Sample Preparation Support

  • Degassing temperature and time optimisation

  • Moisture and contaminant removal guidance

  • Handling protocols for sensitive and porous materials

  • Pre-analysis suitability evaluation

  • (Proper degassing is essential for reliable BET data.)


Deliverables

  • Adsorption–desorption isotherm plots

  • BET surface area values

  • Pore size distribution and pore volume data

  • Method details and analysis conditions

  • Expert interpretation linked to material functionality


Who Should Use This Service

  • Catalyst and adsorbent developers

  • Energy storage and conversion researchers

  • Porous ceramic and oxide material teams

  • Industrial quality-control laboratories


Important Note

BET analysis quantifies accessible surface area and porosity under controlled conditions.
Results must be interpreted alongside morphology (FESEM/TEM) and surface chemistry (XPS) for complete material understanding.

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