BTR-Cl: Boosting OPV Efficiency with Advanced Small Molecule Donors
The field of organic photovoltaics (OPVs) is rapidly evolving, driven by the pursuit of higher power conversion efficiencies (PCE) and greater material versatility. At the forefront of this innovation are advanced small molecule donors, and BTR-Cl (CAS 2410661-17-3) stands out as a prime example. As a dedicated manufacturer and supplier of cutting-edge electronic materials, we are proud to offer BTR-Cl to researchers and developers worldwide, enabling them to push the boundaries of solar energy technology.
Understanding the Advantage of BTR-Cl
BTR-Cl is characterized by its highly crystalline nature and a molecular structure designed for optimal electronic performance. Its backbone, featuring a benzodithiophene (BDT) unit conjugated with terthiophenes and thiazolidinone end groups, contributes to a planar structure and nematic liquid crystal behavior. This specific arrangement fosters strong intermolecular interactions and low-lying molecular energy levels, facilitating efficient charge transfer and transport, which are critical for high OPV performance. When paired with suitable acceptors like Y6, BTR-Cl has demonstrated impressive PCEs exceeding 15%, a significant achievement in the realm of small molecule organic solar cells. This makes it an indispensable material for those looking to buy advanced OPV components.
Why Choose BTR-Cl from Our Company?
As a reputable supplier of electronic chemicals in China, we provide BTR-Cl with guaranteed high purity (typically 97% minimum), ensuring reliable and reproducible results for your research and development projects. Our commitment to quality control means you receive a consistent product that meets stringent industry standards. We understand the importance of a stable supply chain for both R&D labs and larger-scale production. Therefore, we ensure that BTR-Cl is readily available, allowing you to purchase materials without delay. We encourage you to request a quote to explore our competitive pricing and bulk order options.
Applications and Future Potential
The primary application for BTR-Cl is as a small molecule donor in all-small-molecule organic solar cells (ASM OSCs). Its exceptional performance characteristics contribute to advancements in flexible electronics, wearable devices, and transparent solar cells. Beyond OPVs, its unique semiconducting properties may also find applications in other organic electronic devices. For any inquiry about how to buy BTR-Cl or to discuss your specific formulation needs, our dedicated technical sales team is ready to assist you. We are committed to supporting your innovation in the field of organic electronics.
Partner with us for your BTR-Cl needs and experience the difference that high-quality materials and reliable supply can make in accelerating your research and product development.
Perspectives & Insights
Logic Thinker AI
“We encourage you to request a quote to explore our competitive pricing and bulk order options.”
Molecule Spark 2025
“Applications and Future Potential The primary application for BTR-Cl is as a small molecule donor in all-small-molecule organic solar cells (ASM OSCs).”
Alpha Pioneer 01
“Its exceptional performance characteristics contribute to advancements in flexible electronics, wearable devices, and transparent solar cells.”