1,4-DIBROMOBENZENE 98% For Synthesis | 03254 | Loba Chemie

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1,4-DIBROMOBENZENE 98% For Synthesis | 03254 | Loba Chemie

Ultra-pure 1,4-Dibromobenzene (98%) for synthesis, offering excellent reactivity and stability in organic reactions.

Original price was: ₹2,450.00.Current price is: ₹2,205.00.

Description

Specifications Table

Product Name – 1,4-DIBROMOBENZENE 98% For Synthesis
Quantity/Pack Size – 500 g
Form – Solid (Crystalline Powder)
Grade – For Synthesis
Application – Organic synthesis, intermediate in chemical reactions

Product Overview

1,4-Dibromobenzene 98% is a high-purity aromatic compound widely used as a key intermediate in organic synthesis. This crystalline solid offers exceptional reactivity due to its symmetrical dibromo substitution, making it ideal for applications requiring precise halogenation or coupling reactions. The synthesis-grade purity ensures minimal impurities, reducing side reactions and improving yield consistency. Its stable molecular structure allows for reliable performance in various reaction conditions, including nucleophilic substitutions and cross-coupling protocols. The compound’s low moisture absorption and high thermal stability further enhance its utility in laboratory settings. Whether used in multi-step syntheses or as a building block for complex molecules, this reagent delivers consistent results. The 500g packaging provides an optimal balance between bulk availability and storage convenience, maintaining product integrity throughout its shelf life.

FAQs

1. What is the melting point of 1,4-Dibromobenzene?

1,4-Dibromobenzene typically has a melting point range of 87-90°C, though slight variations may occur depending on purity.

2. Is this compound compatible with common organic solvents?

Yes, it shows good solubility in most organic solvents like dichloromethane, THF, and toluene, though solubility may vary with temperature.

3. What alternatives exist for similar bromination reactions?

1,2-Dibromobenzene or 1,3-dibromobenzene can serve as positional isomers, though their reactivity patterns differ due to substitution positions.

4. How should this chemical be stored for long-term use?

Store in a tightly sealed container at room temperature, protected from light and moisture to prevent degradation.

5. What safety precautions are recommended during handling?

Use standard lab safety measures including gloves, goggles, and proper ventilation, as it may cause irritation upon contact.