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Zinc bromide (ZnBr2) holds significant importance in scientific research due to its diverse properties and wide-ranging applications across various disciplines. One of its primary mechanisms of action lies in its role as a Lewis acid catalyst. Zinc bromide′s ability to accept electron pairs from other molecules makes it invaluable in catalyzing a variety of organic transformations. In organic synthesis, zinc bromide facilitates reactions such as Friedel-Crafts acylations, alkylations, and rearrangements by activating electrophilic substrates and stabilizing reaction intermediates. Moreover, zinc bromide finds extensive use in the field of materials science, where it serves as a key component in the synthesis of zinc-based materials and nanocomposites. Its ability to form stable coordination complexes with organic ligands enables the preparation of functionalized nanoparticles and hybrid materials with tailored properties for applications in catalysis, sensing, and energy storage. Additionally, research efforts have explored its potential in electrochemistry, where it is utilized as an electrolyte in batteries and electrochemical cells. Furthermore, zinc bromide is employed in analytical chemistry as a reagent for the determination and quantification of certain analytes. Its reaction with specific functional groups, such as alcohols and amines, enables their derivatization and subsequent analysis via chromatographic or spectroscopic techniques. Overall, zinc bromide continues to be a versatile and indispensable tool in scientific investigations, owing to its diverse functionalities and broad utility in research applications spanning organic synthesis, materials science, electrochemistry, and analytical chemistry.
Ordering Information
Product Name | Catalog # | UNIT | Price | Qty | FAVORITES | |
Zinc bromide, 100 g | sc-203416 | 100 g | $54.00 | |||
Zinc bromide, 500 g | sc-203416A | 500 g | $152.00 | |||
Zinc bromide, 1 kg | sc-203416B | 1 kg | $265.00 | |||
Zinc bromide, 5 kg | sc-203416C | 5 kg | $950.00 |