| Product Parameter |
Specification |
| Product Name |
MIL-100(Fe) |
| Particle size |
200~500 nm |
| Specific surface area |
≥1300 ㎡/g |
| Pore size |
0.3~1 nm |
Remarkably stable under a wide range of water vapor pressures or treatment with boiling water.
Utilizes iron as the metal center, making it cheap, nontoxic, and environmentally friendly compared to Co or Cr.
Maintains stability up to 280 °C in air and up to 340 °C in a nitrogen (N₂) atmosphere.
MIL-100(Fe) can maintain to be remarkably stable under a large scope of water vapor pressures or treatment with boiling water. On the one hand, iron, the metal center of MIL-100(Fe), is cheap, nontoxic, and environmentally friendly compared with other metals (i.e., Co, Cr, etc), which also makes MIL-100(Fe) welcome. On the other hand, MIL-100(Fe) as a supporting matrix possesses distinctive characteristics including high thermal stability (up to 280 °C in air and 340 °C in N2) and mesoporous structure enabling easy and rapid diffusion of reactant molecules.
MIL-100(Fe) was found to show a good performance in gas adsorption and separation. First, MIL-100(Fe) with mesoporous cages could be a potential water vapor adsorbent. According to its water sorption isotherm at 30 °C, MIL-100(Fe) showed outstanding water sorption uptakes up to 0.873 g H2O per g dry absorbent at partial pressures of over 0.5. This value for MIL-100(Fe) absorbent was much higher than those of commercial adsorbents including NaX (0.336 g/g), SAPO-34 (0.330 g/g), and silica gel (0.327 g/g). In contrast to the conventional porous materials which needed to be dehydrated at high temperature before use, the MIL-100(Fe) adsorbent required a dehydration temperature of 70 °C. The excellent performance in water vapor adsorption exhibited by MIL-100(Fe) suggested commercially viable application of energy-efficient desiccant dehumidification.
Q:
What are the key physical properties of MIL-100(Fe)?
MIL-100(Fe) features a particle size of 200~500 nm, a specific surface area of ≥1300 ㎡/g, and a pore size ranging from 0.3 to 1 nm.
Q:
Why is MIL-100(Fe) considered environmentally friendly?
Unlike other metal-organic frameworks that use metals like Cobalt (Co) or Chromium (Cr), MIL-100(Fe) uses Iron (Fe) as its metal center, which is cheap, nontoxic, and environmentally friendly.
Q:
What is the thermal stability limit of MIL-100(Fe)?
MIL-100(Fe) exhibits high thermal stability, resisting temperatures up to 280 °C in air and up to 340 °C in a Nitrogen (N₂) environment.
Q:
How does its water adsorption capacity compare to commercial adsorbents?
MIL-100(Fe) achieves a water sorption uptake of up to 0.873 g H₂O per g dry adsorbent. This is significantly higher than common alternatives such as NaX (0.336 g/g), SAPO-34 (0.330 g/g), and silica gel (0.327 g/g).
Q:
What dehydration temperature does MIL-100(Fe) require before use?
While conventional porous materials require high-temperature dehydration, the MIL-100(Fe) adsorbent only requires a low dehydration temperature of 70 °C, making it highly energy-efficient.