AE28591
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
200mg | 98% | in stock | $176.00 | $123.00 | - + | |
250mg | 98% | in stock | $189.00 | $132.00 | - + | |
1g | 98% | in stock | $634.00 | $444.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AE28591 |
Chemical Name: | 4,8-Bis(dodecyloxy)benzo[1,2-b:4,5-b']dithiophene |
CAS Number: | 1044795-04-1 |
Molecular Formula: | C34H54O2S2 |
Molecular Weight: | 558.9214 |
MDL Number: | MFCD31618105 |
SMILES: | CCCCCCCCCCCCOc1c2sccc2c(c2c1ccs2)OCCCCCCCCCCCC |
4,8-Bis(dodecyloxy)benzo[1,2-b:4,5-b']dithiophene, commonly referred to as $name$, is a versatile compound frequently used in chemical synthesis. This unique molecule plays a crucial role in the creation of advanced organic materials and functional polymers. Its application in synthesis involves serving as a building block or monomer in the production of various organic electronic materials, such as organic semiconductors and optoelectronic devices.The chemical structure of 4,8-Bis(dodecyloxy)benzo[1,2-b:4,5-b']dithiophene provides it with exceptional properties that make it ideal for use in designing and developing novel materials with tailored electronic properties. By incorporating $name$ into polymer chains or organic frameworks, researchers can manipulate its structure to enhance characteristics like charge transport, light absorption, and energy conversion efficiency. This compound has been instrumental in the advancement of organic electronics and has contributed significantly to the field of materials science.In chemical synthesis, 4,8-Bis(dodecyloxy)benzo[1,2-b:4,5-b']dithiophene acts as a key component for creating complex molecular architectures with desired functionalities. Its ability to form stable and well-defined structures makes it a valuable tool for synthesizing high-performance materials used in various technological applications, including organic photovoltaics, light-emitting diodes, and field-effect transistors. Researchers continue to explore the versatile capabilities of $name$ in chemical synthesis to innovate and improve the performance of organic electronic devices.