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724440 Sigma-Aldrich

9,10-Anthracenedicarboxylic acid

Green Alternative

95%

Synonym: H2ADC

  • CAS Number 73016-08-7

  • Empirical Formula (Hill Notation) C16H10O4

  • Molecular Weight 266.25

  •  MDL number MFCD00229428

  •  PubChem Substance ID 329764087

  •  NACRES NA.23

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Properties

Related Categories Alternative Energy, Chemical Synthesis, Enabling Products, Greener Alternative Products, Material Science Enabling Products,
Quality Level   100
assay   95%
greener alternative product characteristics   Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.
mp   >300 °C
SMILES string   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)
InChI key   FDFGHPKPHFUHBP-UHFFFAOYSA-N

Description

General description

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.

We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here.

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.

Packaging

500 mg in glass insert

Safety & Documentation

Safety Information

Symbol 
GHS09  GHS09
Signal word 
Warning
Hazard statements 
Precautionary statements 
RIDADR 
UN 3077 9 / PGIII
WGK Germany 
WGK 3
Flash Point(F) 
Not applicable
Flash Point(C) 
Not applicable

Documents

Certificate of Analysis (COA)

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Protocols & Articles

Articles

Metal Organic Frameworks

Metal-organic frameworks (MOFs) are materials in which metal – to-organic ligand interactions yield porous coordination networks with record-setting surface areas surpassing activated carbons and zeo...

PCN-13 | Metal-Organic Frameworks (MOF's)

Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool
Keywords: Adsorption, Applications, Metal organic frameworks

PCN-131 | Metal-Organic Frameworks (MOF's)

Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool
Keywords: Adsorption, Applications, Metal organic frameworks

PCN-131' | Metal-Organic Frameworks (MOF's)

Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool
Keywords: Adsorption, Applications, Metal organic frameworks

PCN-132 | Metal-Organic Frameworks (MOF's)

Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool
Keywords: Adsorption, Applications, Metal organic frameworks

PCN-19 | Metal-Organic Frameworks (MOF's)

Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool
Keywords: Adsorption, Applications, Metal organic frameworks

Selected Applications of Metal-Organic Frameworks in Sustainable Energy Technologies

Although the field of high surface area materials is considered very mature, the need for improved materials for alternative energy applications remains pressing. Currently, zeolites, metal oxides, a...
Stephen R. Caskey, Adam J. Matzger
Material Matters 2009, 4.4, 111.
Keywords: Adsorption, Alternative energy, Combustion, Diffraction, Environmental, Filtration, Infrared spectroscopy, Ligands, Metal organic frameworks, Purification, Scintillation, Separation, Solvents, Sonication, X-Ray diffraction

Related Content

MOF Constructor

Metal-Organic Frameworks (MOFs) are a novel class of 3D networked, crystalline materials composed of metal ions or clusters connected by organic linkers. Given their porous nature and often high surf...

Peer-Reviewed Papers
15

References

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