This premium 1,4- Dibromo Butane, also known as Tetramethylene Dibromide, is a high-grade liquid chemical for advanced organic synthesis. Ideal for complex reactions requiring precise, pure reagents.
₹2,097.00 Original price was: ₹2,097.00.₹1,468.00Current price is: ₹1,468.00.
Product Name – 1,4- Dibromo Butane for Synthesis (Tetramethylene Dibromide)
Quantity/Pack Size – 250 ml
Form – Liquid
Grade – For Synthesis
Application – Organic Synthesis, Intermediate in Chemical Reactions
1,4-Dibromobutane, recognized as Tetramethylene Dibromide, is a crucial halogenated organic compound for chemical synthesis and research laboratories. This high-grade reagent features a linear four-carbon chain with bromine atoms at terminal positions, granting significant reactivity for diverse synthetic pathways. Its exceptional purity is paramount for consistent, dependable results in sensitive chemical procedures. As a fundamental building block, it is frequently employed in nucleophilic substitution reactions, facilitating the formation of various cyclic and acyclic organic compounds. The symmetrical bromine placement enables effective ring formation and molecular bridging, crucial for crafting complex molecular frameworks and preparing specialty chemicals.
Presented as a colorless to pale yellow liquid with a distinct odor, 1,4-Dibromobutane exhibits excellent solubility in common organic solvents such as ethers, alcohols, and chlorinated hydrocarbons, enhancing its utility across different reaction environments. Adherence to proper handling and storage protocols, including storage in a cool, well-ventilated area away from direct sunlight and moisture, is essential to maintain its chemical integrity and efficacy over time. Our product undergoes rigorous quality control, guaranteeing it meets the demanding standards of laboratory applications where precision, reproducibility, and minimal impurities are vital for successful intricate chemical processes. Its versatile nature supports applications in diverse heterocyclic systems, specialized polymers, and advanced pharmaceutical intermediates, underscoring its broad utility in contemporary synthetic organic chemistry and research.
1,4-Dibromobutane is primarily used as a difunctional electrophile in organic synthesis, particularly for forming cyclic compounds and introducing butane chains through nucleophilic substitution reactions.
Yes, 1,4-Dibromobutane can react with strong bases, often leading to elimination reactions or further substitution depending on the reaction conditions and the specific base used.
Depending on the specific desired product, alternatives might include other dihalogenated butanes or butane derivatives with different leaving groups, or a two-step synthesis using 1,4-butanediol as a precursor.
It is recommended to store 1,4-Dibromobutane in a tightly sealed container in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible materials, to maintain its stability.
To ensure purity, always purchase from reputable suppliers who provide a Certificate of Analysis (CoA) with their products, detailing the assay and impurity levels, confirming it is suitable for synthesis grade.
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₹2,097.00 Original price was: ₹2,097.00.₹1,468.00Current price is: ₹1,468.00.
This premium 1,4- Dibromo Butane, also known as Tetramethylene Dibromide, is a high-grade liquid chemical for advanced organic synthesis. Ideal for complex reactions requiring precise, pure reagents.
Product Name – 1,4- Dibromo Butane for Synthesis (Tetramethylene Dibromide)
Quantity/Pack Size – 250 ml
Form – Liquid
Grade – For Synthesis
Application – Organic Synthesis, Intermediate in Chemical Reactions
1,4-Dibromobutane, recognized as Tetramethylene Dibromide, is a crucial halogenated organic compound for chemical synthesis and research laboratories. This high-grade reagent features a linear four-carbon chain with bromine atoms at terminal positions, granting significant reactivity for diverse synthetic pathways. Its exceptional purity is paramount for consistent, dependable results in sensitive chemical procedures. As a fundamental building block, it is frequently employed in nucleophilic substitution reactions, facilitating the formation of various cyclic and acyclic organic compounds. The symmetrical bromine placement enables effective ring formation and molecular bridging, crucial for crafting complex molecular frameworks and preparing specialty chemicals.
Presented as a colorless to pale yellow liquid with a distinct odor, 1,4-Dibromobutane exhibits excellent solubility in common organic solvents such as ethers, alcohols, and chlorinated hydrocarbons, enhancing its utility across different reaction environments. Adherence to proper handling and storage protocols, including storage in a cool, well-ventilated area away from direct sunlight and moisture, is essential to maintain its chemical integrity and efficacy over time. Our product undergoes rigorous quality control, guaranteeing it meets the demanding standards of laboratory applications where precision, reproducibility, and minimal impurities are vital for successful intricate chemical processes. Its versatile nature supports applications in diverse heterocyclic systems, specialized polymers, and advanced pharmaceutical intermediates, underscoring its broad utility in contemporary synthetic organic chemistry and research.
1,4-Dibromobutane is primarily used as a difunctional electrophile in organic synthesis, particularly for forming cyclic compounds and introducing butane chains through nucleophilic substitution reactions.
Yes, 1,4-Dibromobutane can react with strong bases, often leading to elimination reactions or further substitution depending on the reaction conditions and the specific base used.
Depending on the specific desired product, alternatives might include other dihalogenated butanes or butane derivatives with different leaving groups, or a two-step synthesis using 1,4-butanediol as a precursor.
It is recommended to store 1,4-Dibromobutane in a tightly sealed container in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible materials, to maintain its stability.
To ensure purity, always purchase from reputable suppliers who provide a Certificate of Analysis (CoA) with their products, detailing the assay and impurity levels, confirming it is suitable for synthesis grade.
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