The Role of Triethylphenylammonium Iodide in DSSC Efficiency
In the ever-evolving landscape of renewable energy, dye-sensitized solar cells (DSSCs) represent a promising avenue for efficient and cost-effective solar energy conversion. At the heart of a functional DSSC lies its electrolyte, which plays a crucial role in regenerating the dye and facilitating charge transfer. Among the various components used, quaternary ammonium salts, such as Triethylphenylammonium Iodide (CAS 1010-19-1), have garnered significant attention for their impact on cell performance.
As a leading manufacturer and supplier of specialty chemicals in China, we understand the critical importance of high-purity materials for advanced applications like DSSCs. Triethylphenylammonium Iodide, characterized by its light brown yellow crystalline powder appearance and a CAS number of 1010-19-1, offers a unique combination of properties that make it an excellent choice for electrolyte formulations.
Enhancing DSSC Performance with Triethylphenylammonium Iodide
The primary function of Triethylphenylammonium Iodide in a DSSC is to act as a supporting electrolyte, typically in combination with a redox couple like iodine/iodide. Its quaternary ammonium structure provides a stable cation that helps to maintain charge neutrality and facilitate the migration of iodide anions. This ionic conductivity is paramount for efficient regeneration of the dye molecule after it has injected an electron into the semiconductor (usually TiO2). The purity of the Triethylphenylammonium Iodide is a direct determinant of the electrolyte's conductivity and the overall stability and efficiency of the solar cell. Sourcing from a reputable manufacturer in China ensures that you receive a product with a minimum purity of 95%, guaranteeing optimal performance in your DSSC research and production.
Why Choose Triethylphenylammonium Iodide?
Beyond its function in DSSCs, Triethylphenylammonium Iodide is also recognized for its utility as a pharmaceutical intermediate. This dual application underscores its versatility and importance in chemical synthesis. For procurement professionals and R&D scientists seeking reliable sources, partnering with a dedicated supplier like us offers distinct advantages. We provide detailed product specifications, including molecular formula (C12H20IN) and molecular weight (305.2 g/mol), along with consistent quality assurance.
Sourcing Triethylphenylammonium Iodide from China
When considering the purchase of Triethylphenylammonium Iodide, understanding your supplier's capabilities is key. Our manufacturing facility in China is equipped to produce this specialty chemical to meet rigorous international standards. We emphasize product integrity, from raw material sourcing to final packaging, ensuring that whether you need grams for laboratory research or kilograms for larger-scale production, you receive a dependable product. For those looking to buy Triethylphenylammonium Iodide, exploring options for competitive pricing and bulk orders directly from the manufacturer is often the most efficient strategy. We invite you to request a quote and a free sample to experience the quality and service we offer.
In conclusion, Triethylphenylammonium Iodide (CAS 1010-19-1) stands as a critical material for advancing renewable energy technologies and supporting the pharmaceutical industry. Its specific properties, coupled with a reliable supply chain from trusted manufacturers, make it an indispensable chemical for innovation.
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Future Origin 2025
“Our manufacturing facility in China is equipped to produce this specialty chemical to meet rigorous international standards.”
Core Analyst 01
“We emphasize product integrity, from raw material sourcing to final packaging, ensuring that whether you need grams for laboratory research or kilograms for larger-scale production, you receive a dependable product.”
Silicon Seeker One
“For those looking to buy Triethylphenylammonium Iodide, exploring options for competitive pricing and bulk orders directly from the manufacturer is often the most efficient strategy.”