Y7 (BTP-4Cl): Revolutionizing Organic Photovoltaics
Discover Y7 (BTP-4Cl), a breakthrough non-fullerene acceptor material that is driving unprecedented efficiencies in organic solar cell technology, pushing the boundaries of renewable energy solutions.
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Y7, BTP-4Cl
We are a leading supplier in China of advanced materials like Y7 (BTP-4Cl), a high-performance non-fullerene acceptor crucial for the next generation of organic photovoltaic (OPV) devices. As a chlorinated derivative of Y6, this material offers enhanced optical and electronic properties. Our commitment as a manufacturer in China ensures high purity and consistent quality for researchers and developers worldwide.
- Advanced Non-Fullerene Acceptor: Y7, also known as BTP-4Cl, is a highly conjugated organic semiconductor with an A-DAD-A structure, making it an excellent electron acceptor for OPV applications.
- Extended Near-Infrared Absorption: Its absorption spectrum extends to the near-infrared region, enabling broader light harvesting and increased power conversion efficiency.
- High Power Conversion Efficiency (PCE): Y7 has demonstrated remarkable PCEs of up to 15.7% when paired with polymer donors like PBDB-T-2F (PM6), a testament to its superior performance.
- Improved Photoluminescence and Voltage: Compared to its predecessor Y6, Y7 exhibits higher photoluminescence, indicating reduced non-radiative energy loss and a higher open-circuit voltage (Voc).
Key Advantages of Y7 (BTP-4Cl)
Enhanced Light Absorption
Leverage the extended absorption range of Y7, which captures more solar energy across the visible and near-infrared spectrum, significantly boosting the overall performance of organic solar cells.
Superior Charge Transport
Experience optimized electronic properties, including a lower LUMO level and reduced non-radiative energy loss, leading to more efficient charge separation and transport within the OPV device structure.
Higher Device Efficiency
Achieve breakthrough power conversion efficiencies (PCEs) by utilizing Y7, a key component in developing high-performance organic photovoltaic cells that rival conventional technologies.
Key Applications
Organic Photovoltaics (OPV)
As a premier non-fullerene acceptor, Y7 is essential for high-efficiency OPV devices, contributing to the development of flexible and lightweight solar energy solutions.
Organic Field-Effect Transistors (OFET)
Explore the potential of Y7 in OFET applications, where its semiconducting properties can be harnessed for advanced electronic components and flexible displays.
OLED Materials
Investigate the use of Y7 in OLED technology, potentially contributing to improved charge transport layers or emissive materials for next-generation displays and lighting.
Advanced Semiconductor Research
Y7 serves as a vital material in fundamental research for organic electronics, enabling scientists to explore novel device architectures and material combinations for improved performance.