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Exploring Phosphonium Ionic Liquids: Properties and Applications

Phosphonium ionic liquids (PILs) represent a fascinating class of organic salts that remain liquid at or below 100°C. Among these, Tributylhexylphosphonium Bromide, identified by CAS number 105890-71-9, stands out due to its distinctive chemical structure and broad applicability. As a dedicated manufacturer and supplier, understanding the nuances of such compounds is paramount to serving our B2B clientele, including procurement managers and R&D scientists.

Tributylhexylphosphonium Bromide, with the molecular formula C18H40BrP and a molecular weight of approximately 367.4 g/mol, is characterized by a central phosphorus atom bonded to three butyl groups and one hexyl group, paired with a bromide anion. This specific arrangement imparts unique physical and chemical properties, making it a sought-after material for various industrial processes. Its appearance can range from colorless to light orange or yellow, often as a clear liquid, though variations can occur based on purity and formulation.

One of the most significant roles of Tributylhexylphosphonium Bromide is as a phase transfer catalyst (PTC). In organic synthesis, PTCs are crucial for facilitating reactions between reactants located in different immiscible phases (e.g., aqueous and organic). By transferring one reactant into the phase of the other, PTCs dramatically increase reaction rates, improve yields, and often allow for milder reaction conditions. This makes Tributylhexylphosphonium Bromide an invaluable tool for researchers looking to buy efficient chemical intermediates. Manufacturers like us ensure that the purity of this compound supports optimal catalytic activity.

Beyond its role as a PTC, this phosphonium ionic liquid finds extensive use in electrochemistry. Its ionic conductivity and thermal stability make it an excellent candidate for electrolyte formulations in batteries, fuel cells, and supercapacitors. The drive towards cleaner energy solutions means that suppliers of high-performance electrolyte components are in high demand. For procurement managers in the battery sector, sourcing reliable and high-purity Tributylhexylphosphonium Bromide is key to developing next-generation energy storage devices.

The material science sector also benefits from the unique properties of Tributylhexylphosphonium Bromide. It can be used in the development of novel industrial solvents, lubricants, and advanced materials. Its ability to remain liquid over a wide temperature range and its tunable solvation properties open up possibilities for innovative applications. When considering the purchase of such specialty chemicals, consulting with experienced manufacturers and suppliers is vital to ensure you are acquiring the right grade for your specific research or production needs.

For companies seeking to integrate Tributylhexylphosphonium Bromide into their workflows, understanding its availability and pricing is essential. As a leading manufacturer based in China, we are committed to providing competitive prices and consistent supply to meet the demands of the global market. Whether you are looking to buy small research quantities or bulk industrial volumes, our team is equipped to assist. Explore the potential of phosphonium ionic liquids by partnering with a reliable supplier like us, and unlock new possibilities in your chemical endeavors.

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3. We can satisfy customers' perfect transition from small scale lab requirements (gram level) to commercialization requirements (hundred tons level).

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  • A: We don't have Minimum Order Quantity, exact quantity should be provided before quotation for us to calculate the exact cost.

  • A: We don't provide free samples due to lots of request and expensive international courier's cost, we can deduct the sample charge after commercial order placed.

  • A: Our payment terms: Small or sample order: T/T IN ADVANCE. Commercial order: First order should be by T/T IN ADVANCE or L/C at sight, and following orders T/T 30~90days is acceptable subject to approval of credit application.

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