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MIL-68-NH2(Al) Metal Organic Frameworks (MOFs) Powder for Gas Absorption, Separation, and Photocatalysis, CGASPCMOFMIL68NH2Al

MIL-68-NH2(Al) Metal Organic Frameworks (MOFs) Powder for Gas Absorption, Separation, and Photocatalysis, CGASPCMOFMIL68NH2Al

$399.00 USD
In Stock SKU: CGASPCMOFMIL68NH2Al
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NH2-MIL-68(Al) (or MIL-68-NH2(Al), chemical formula Al(OH)(BDC-NH2), where BDC-NH2 = 2-amino-1,4-benzenedicarboxylate) is the isoreticular, amino-functionalized analogue of pristine MIL-68(Al). It is constructed from infinite 1D chains of corner-sharing AlO4(OH)2 octahedra bridged by 2-aminoterephthalate linkers, forming a rigid Kagome-like topology with dual 1D straight channels that exhibit no framework breathing transitions.

The critical structural and functional features of the MIL-68(Al) are shown below: (1) Dual 1D Channel System (Kagome Lattice): Large Hexagonal Channels: Internal diameter of ~15.0–16.5 Å (accessible window ~ 14.5 Å), allowing rapid diffusion of larger gas guests and organic vapors. Small Triangular Channels: Internal diameter of ~ 5.0–6.0 Å, offering size-selective micropores with strong confinement effects for small gas molecules. (2) Lewis Basic & Polar Pore Environment: Uncoordinated aromatic -NH2 groups directly decorate the 1D pore walls, introducing electron-rich nitrogen lone pairs and hydrogen-bonding sites that selectively interact with acidic and polar guest molecules. (3) Hydrothermal & Chemical Stability: Strong covalent/ionic Al(III)–O coordination bonds provide resilience in water, high relative humidity, and mild acidic/basic environments, with thermal stability up to ~ 320–360°C.

Part Number CGASPCMOFMIL68NH2Al (C-GASPC-MOF-MIL68NH2Al)
CAS 1410543-02-5
Color Brown Powder
Size 200-500 nm
BET ~950-1250 m2/g
Pore Size 0.6-1.7 nm
Primary Applications

Gas absorption, storage, and separation. 

Wastewater treatment, ion separation,

Photocatalysis 

Package Grade 5 g/bottle (a larger quantity can be supplied upon request)


References:

  1. Q. Sun, et al., New insights on how metal clusters in MIL-68-NH2 influence the photocatalytic nitrogen fixation, Journal of Alloys and Compounds, 2025, 1023, 180123.
  2. Y. Lu, et al., Emerging Homochiral Porous Materials for Enantiomer Separation, Adv Funct. Mater., 2021, 31, 2101335

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