Optimizing Olefination: (2-Carboxyethyl)(triphenyl)phosphonium Bromide as a Key Wittig Reagent
Olefination reactions are indispensable in organic synthesis for creating carbon-carbon double bonds, and the Wittig reaction remains one of the most powerful and widely utilized methods. At the heart of this transformation lies the phosphonium ylide, derived from key reagents like (2-Carboxyethyl)(triphenyl)phosphonium Bromide (CAS 51114-94-4). This compound is crucial for achieving high efficiency and selectivity in olefin synthesis.
Chemists often seek to buy 51114-94-4 for olefination due to its reliable performance and broad applicability. Our product, manufactured by NINGBO INNO PHARMCHEM CO.,LTD., ensures the consistent quality necessary for reproducible results, whether in academic research or industrial production. The distinct reactivity profile of this phosphonium bromide for olefination makes it a preferred choice for synthesizing diverse olefinic compounds, from simple alkenes to complex, functionalized structures.
As a leading Wittig reaction chemical intermediate 51114-94-4, it provides a direct and effective pathway to various olefin targets, often bypassing multi-step synthetic routes. This translates into increased efficiency and reduced waste in the synthesis process. Understanding the precise application and benefits of such a specialized reagent can significantly streamline synthetic efforts and enhance overall productivity in the laboratory.
When considering the cost-effectiveness, the (2-carboxyethyl)triphenylphosphonium bromide price becomes a factor. NINGBO INNO PHARMCHEM CO.,LTD. focuses on providing competitive pricing without compromising the superior quality that synthetic chemists expect. Our aim is to support innovative research and development by supplying high-grade chemical intermediates that empower chemists to push the boundaries of synthetic chemistry and achieve optimal outcomes in their olefination strategies.
Perspectives & Insights
Alpha Spark Labs
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Future Pioneer 88
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Core Explorer Pro
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