724440
9,10-Anthracenedicarboxylic acid
95%
Synonyme(s) :
H2ADC
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About This Item
Produits recommandés
Niveau de qualité
Pureté
95%
Forme
solid
Caractéristiques du produit alternatif plus écologique
Design for Energy Efficiency
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sustainability
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Pf
>300 °C
Autre catégorie plus écologique
, Enabling
Chaîne SMILES
OC(=O)c1c2ccccc2c(C(O)=O)c3ccccc13
InChI
1S/C16H10O4/c17-15(18)13-9-5-1-2-6-10(9)14(16(19)20)12-8-4-3-7-11(12)13/h1-8H,(H,17,18)(H,19,20)
Clé InChI
FDFGHPKPHFUHBP-UHFFFAOYSA-N
Description générale
9,10-Anthracenedicarboxylic acid (H2L) is an anthracene based dicarboxylic compound, which has a larger conjugating π-system that enables the development of fluorescent materials. It has interesting magnetic and luminescent properties. It can be used as a bridging carboxylic acid ligand with a steric bulk due to the presence of its anthracene ring.
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Application
H2L can be potentially used in the formation of highly porous nanotubular and ultramicroporous metal organic frameworks (MOFs) for greener applications like hydrogen storage, methane storage and gas separation.
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Les clients ont également consulté
Ultramicroporous Metal- Organic Framework Based on 9, 10-Anthracenedicarboxylate for Selective Gas Adsorption
Inorganic Chemistry, 46(21), 8499-8501 (2007)
Manganese (II) complexes with a bulky anthracene-based dicarboxylic ligand: Syntheses, crystal structures, and magnetic properties
Australian Journal of Chemistry, 61(5), 382-390 (2008)
Zinc (II) coordination architectures with two bulky anthracene-based carboxylic ligands: crystal structures and luminescent properties
CrystEngComm, 10(6), 681-692 (2008)
Cadmium (II) and lanthanum (III) coordination architectures with anthracene-9, 10-dicarboxylate: Crystal structures and photoluminescent properties
Inorgorganica Chimica Acta, 385(6), 58-64 (2012)
Chemistry (Weinheim an der Bergstrasse, Germany), 26(12), 2726-2734 (2019-11-28)
Anhydrous EuII -acetylenedicarboxylate (EuADC; ADC2- = - O2 C-C≡C-CO2- ) was synthesized by reaction of EuBr2 with K2 ADC or H2 ADC in degassed water under oxygen-free conditions. EuADC crystallizes in the SrADC type structure (I41 /amd, Z=4) forming a
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