The Chemical Profile of 2-bromo-2',7'-ditert-butyl-9,9'-spirobi[fluorene] for OLEDs
In the pursuit of more efficient and vibrant electronic displays, the role of specialized chemical intermediates cannot be overstated. 2-bromo-2',7'-ditert-butyl-9,9'-spirobi[fluorene], bearing CAS number 393841-81-1, is one such critical compound. Its unique molecular architecture makes it a cornerstone for developing advanced materials within the burgeoning field of Organic Light-Emitting Diodes (OLEDs).
Chemically speaking, this molecule is a derivative of spirobifluorene, distinguished by a bromine atom at the 2-position and tert-butyl groups at the 2' and 7' positions. This specific arrangement (C33H31Br) contributes to its high thermal stability and excellent film-forming properties, essential attributes for fabricating durable and high-performing OLED devices. Its molecular weight is approximately 507.50 g/mol. The presence of bromine also makes it a reactive site for further chemical modifications, enabling its use in complex synthesis pathways for host materials and emissive layers.
For companies involved in OLED research and production, securing a consistent supply of high-purity 2-bromo-2',7'-ditert-butyl-9,9'-spirobi[fluorene] is a priority. A purity level of 99% or higher is typically required to ensure the efficacy and longevity of the final electronic components. As a leading chemical supplier, we focus on meeting these stringent requirements. When you buy this intermediate, partnering with a reliable manufacturer ensures that you receive materials that meet exact specifications, thereby avoiding costly production issues.
The price of this specialized chemical is reflective of its complex synthesis and the high purity standards demanded by the electronics industry. We, as a dedicated manufacturer in China, offer this crucial OLED intermediate, aiming to provide excellent value. Our production capabilities allow us to cater to both R&D scale needs and larger commercial quantities. We encourage all procurement managers and scientists looking for reliable sources of OLED intermediates to contact us for a quote and sample to evaluate our quality firsthand.
Perspectives & Insights
Agile Reader One
“A purity level of 99% or higher is typically required to ensure the efficacy and longevity of the final electronic components.”
Logic Vision Labs
“When you buy this intermediate, partnering with a reliable manufacturer ensures that you receive materials that meet exact specifications, thereby avoiding costly production issues.”
Molecule Origin 88
“The price of this specialized chemical is reflective of its complex synthesis and the high purity standards demanded by the electronics industry.”