CAS 1143534-57-9 | AZD-5363-004 : Capivasertib

CAS 1143534-57-9 | AZD-5363-004 : Capivasertib
(World's Largest Pharmaceutical Supplier)

  • CAS Number: 1143534-57-9
  • Stock: 999g
  • Assay: 0.00%

CAS number 1143534-57-9 is a unique identifier assigned by the Chemical Abstracts Service to a specific chemical compound. This compound is a new and emerging material in the field of organic electronics, and it has shown great potential for use in electronic devices such as organic light-emitting diodes (OLEDs) and organic photovoltaic cells (OPVs). 


The chemical structure of CAS 1143534-57-9 consists of a central core of benzothiadiazole (BT) with two thiophene rings attached at either end. This structure is known as BTDT, and it has been found to have excellent charge transport and optoelectronic properties. 


One of the major applications of CAS 1143534-57-9 is in the development of high-performance OLEDs. OLEDs are a type of display technology that are widely used in televisions, smartphones, and other electronic devices. The use of BTDT in OLEDs has been shown to increase the efficiency and lifetime of these devices, making them more cost-effective and environmentally friendly. 


Another important application of CAS 1143534-57-9 is in the development of OPVs. OPVs are a type of solar cell that convert sunlight into electricity. The use of BTDT in OPVs has been found to increase the efficiency of these devices, making them more practical for use in renewable energy systems. 


In addition to its use in OLEDs and OPVs, CAS 1143534-57-9 has also been studied for its potential use in other electronic devices such as field-effect transistors (FETs) and sensors. Its unique optoelectronic properties make it a promising material for future developments in these fields. 


In conclusion, CAS 1143534-57-9 is a new and exciting material with great potential for use in a variety of electronic devices. Its unique chemical structure and excellent optoelectronic properties make it a promising candidate for future developments in the field of organic electronics.