Special Offer Pffbt4t-c9c13 (pce12) Bonkers Deal: 85% Off [ViRCYjhb]
PffBT4T-C9C13: Next-Generation Polymer Donor for High-Performance Solar Cells PffBT4T-C9C13, also known as PCE12, represents a significant advancement in organic photovoltaics. This innovative polymer donor offers unparalleled solubility and film mor
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Special Offer Pffbt4t-c9c13 (pce12) Bonkers Deal: 85% Off [ViRCYjhb]
PffBT4T-C9C13: Next-Generation Polymer Donor for High-Performance Solar Cells
PffBT4T-C9C13, also known as PCE12, represents a significant advancement in organic photovoltaics. This innovative polymer donor offers unparalleled solubility and film morphology, making it an ideal choice for enhancing the performance of solar cells. Its larger side chains contribute to better solubility, ensuring that the material can be processed effectively. With PffBT4T-C9C13, you can achieve high device performances, as demonstrated by its successful pairing with PC71BM to reach a power conversion efficiency of 11.7%. This material is not just a component; it's a game-changer in the field of organic photovoltaics.Key Properties and Specifications of PffBT4T-C9C13
PffBT4T-C9C13 is a benzothiadiazole-based polymer with a chemical formula of (C66H97F2N2S5)n. It boasts a broad absorption spectrum in the visible light region, with an absorption edge at approximately 800 nm, making it highly efficient for all-polymer solar cells and NFA-polymer solar cells. The material's HOMO and LUMO values are -5.34 eV and -3.69 eV, respectively, which are critical for its photovoltaic properties. Processed with trimethylbenzene (TMB) or chlorobenzene, PffBT4T-C9C13 can be utilized in a variety of applications, from inkjet printing to more traditional solvent-based processes. Its classification as a benzothiadiazole, fluorinated benzothiadiazole, and organic semiconducting material further highlights its versatility and advanced properties.Applications and Benefits of PffBT4T-C9C13
PffBT4T-C9C13 is not just a laboratory curiosity; it has practical applications that can impact everyday life. Its use in organic photovoltaics is a step towards more sustainable and efficient renewable energy solutions. With the ability to be processed with non-halogenated solvents, PffBT4T-C9C13 offers a more environmentally friendly approach to producing solar cells. This material is perfect for those looking to harness the power of the sun in a cost-effective and eco-friendly manner. Whether for industrial-scale inkjet printing or traditional solar cell manufacturing, PffBT4T-C9C13 is a valuable asset for anyone seeking to advance the field of renewable energy.What Our Customers Say
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