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68217-74-3

9-(2-bromoethyl)adenine

Catalog#: AR006DUW  |   CAS#: 68217-74-3  |   MDL#: MFCD00204182  |   MF: C7H8BrN5  |   MW: 242.0759

Packsize Purity Price Availability Quantity
100mg 97% $61.00 Global Stock Buy Now Add To Cart
250mg 97% $102.00 Global Stock Buy Now Add To Cart
1g 97% $237.00 Global Stock Buy Now Add To Cart
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Catalog Number AR006DUW
Chemical Name 9-(2-bromoethyl)adenine
CAS Number 68217-74-3
Molecular Formula C7H8BrN5
Molecular Weight 242.0759
MDL Number MFCD00204182
SMILES BrCCn1cnc2c1ncnc2N

9-(2-Bromoethyl)adenine is a versatile compound commonly used in chemical synthesis as a key building block to create various biologically active molecules. Due to its unique structure, this compound is able to participate in a wide range of synthetic reactions, making it an essential component in the development of new pharmaceuticals, agrochemicals, and materials.One of the primary applications of 9-(2-Bromoethyl)adenine in chemical synthesis is its role in the synthesis of nucleoside analogs. By incorporating this compound into the structure of nucleosides, researchers can modulate the biological activity and pharmacological properties of these important molecules. This modification is particularly valuable in the development of antiviral and anticancer drugs, where small changes to the structure of nucleosides can significantly enhance their therapeutic potential.Additionally, 9-(2-Bromoethyl)adenine is widely used in the synthesis of DNA-modifying agents and fluorescent probes. Its ability to react selectively with specific functional groups on nucleic acids allows for the precise manipulation of DNA and RNA structures, leading to the development of innovative tools for biological research and medical diagnostics. Furthermore, the fluorescent properties of this compound make it a valuable tool for studying nucleic acid interactions and dynamics in complex biological systems.Overall, the diverse applications of 9-(2-Bromoethyl)adenine in chemical synthesis highlight its importance in the field of medicinal chemistry, bioconjugation, and materials science. Researchers continue to explore new ways to leverage the unique reactivity of this compound to advance our understanding of biological processes and develop novel technologies for various applications.
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GHS Pictogram
Signal Word Warning
UN# N/A
Hazard Statements H302+H312+H332-H315-H319-H335
Precautionary Statements P261-P280-P305+P351+P338
Class N/A
Packing Group N/A

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