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Home  > Chemistry  > Stains and Dyes  > Pigments  > 3,4,9,10-Perylenetetracarboxylic dianhydride

AB44309

128-69-8 | 3,4,9,10-Perylenetetracarboxylic dianhydride

Packsize Purity Availability Price Discounted Price    Quantity
10g 98% in stock $12.00 $8.00 -   +
25g 98% in stock $18.00 $12.00 -   +
100g 98% in stock $42.00 $29.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB44309
Chemical Name: 3,4,9,10-Perylenetetracarboxylic dianhydride
CAS Number: 128-69-8
Molecular Formula: C24H8O6
Molecular Weight: 392.3167
MDL Number: MFCD00006916
SMILES: O=C1OC(=O)c2c3c1ccc1c3c(cc2)c2c3c1ccc1c3c(cc2)C(=O)OC1=O
NSC Number: 79895

 

Computed Properties
Complexity: 730  
Covalently-Bonded Unit Count: 1  
Heavy Atom Count: 30  
Hydrogen Bond Acceptor Count: 6  
XLogP3: 4.5  

 

 

Upstream Synthesis Route
  • Perylene-3,4,9,10-tetracarboxylic dianhydride, commonly known as PTCDA, is a versatile compound widely used in chemical synthesis. This molecule plays a crucial role as an intermediate in the synthesis of various organic materials and polymers. Particularly in the field of organic electronics, PTCDA is utilized as a building block for organic semiconductors due to its unique properties.In chemical synthesis, PTCDA is often employed as a precursor for the production of functional organic materials such as conducting polymers, photovoltaic devices, and light-emitting diodes. Its rigid polycyclic structure and electron-accepting nature make it a valuable component for constructing conjugated systems with enhanced electronic properties.Moreover, PTCDA is known for its ability to form ordered molecular assemblies, making it an essential tool for creating thin films and nanostructures with tailored optoelectronic properties. By controlling the deposition techniques and conditions, researchers can harness the self-assembly behavior of PTCDA to fabricate thin films with specific morphologies and functionalities.Overall, the application of Perylene-3,4,9,10-tetracarboxylic dianhydride in chemical synthesis offers a pathway to design and develop novel organic materials with applications in electronics, photonics, and material science. Its versatility and compatibility with various synthetic strategies make it a valuable ingredient in the toolbox of organic chemists and materials scientists seeking to explore the frontiers of molecular design and functional material development.
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