Organic Chemistry
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Sort Hydrazine or Hydroxylamine Derivatives Alphabetically
Hydrazine or Hydroxylamine Derivatives
Tosyl chloride
(98-59-9)-
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Pharmaceutical Grade / 99%
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Industrial Grade / 99%
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Industrial Grade / -
-
-
- / 99.00%
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Reagent Grade / 99%
$32-38/KG FOB
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Industrial Grade / 99%
Request for quotation , get quotes from more suppliers.
trans-3-Hexen-1-ol
(928-97-2)-
Chemical Grade / 95%
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- / 99.00%
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Industrial Grade / 99%
-
Request for quotation , get quotes from more suppliers.
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Industrial Grade / 99%
-
Request for quotation , get quotes from more suppliers.
Source Hydrazine or Hydroxylamine Derivatives Raw Materials by Region
Frequently Asked Questions
Hydrazine and Hydroxylamine Derivatives are widely used as key intermediates in the synthesis of pharmaceuticals, agrochemicals, dyes, and specialty chemicals. Hydrazine derivatives often serve as building blocks for heterocyclic compounds such as pyrazoles and indoles, while hydroxylamine derivatives are commonly employed in oxime formation and as precursors to nitroso compounds. Their reactivity and versatility make them essential in R&D and industrial-scale production processes.
To ensure quality and purity, verify that the supplier provides comprehensive Certificates of Analysis (CoA), adheres to Good Manufacturing Practices (GMP), and complies with relevant regulatory standards such as ISO or REACH. Request data on impurity profiles, residual solvents, and stability testing. Reputable suppliers should also offer batch-specific documentation and support technical inquiries regarding synthesis compatibility and handling requirements.
Hydrazine and many of its derivatives are toxic, potentially carcinogenic, and may be explosive under certain conditions. Hydroxylamine derivatives can also be unstable and reactive. Always use appropriate personal protective equipment (PPE), work in a fume hood with proper ventilation, and follow SDS guidelines strictly. Storage should be in cool, dry, well-ventilated areas away from oxidizers or incompatible materials. Proper training and emergency response protocols are essential for safe handling.
In pharmaceutical synthesis, Hydrazine Derivatives are frequently used to construct nitrogen-containing heterocycles like pyrazolones, triazoles, and hydrazides—core structures in many active pharmaceutical ingredients (APIs). For example, they play a critical role in synthesizing drugs such as antitubercular agents (e.g., isoniazid analogs) and anti-inflammatory compounds. Their ability to form C–N and N–N bonds makes them invaluable in medicinal chemistry workflows.
When selecting a supplier for Hydroxylamine Derivatives, evaluate their track record in fine chemical manufacturing, regulatory compliance (e.g., ISO 9001, GMP), and ability to provide consistent batch-to-batch quality. Look for suppliers with in-house analytical capabilities, scalable production capacity, and strong technical support. Additionally, consider their experience serving the pharmaceutical or agrochemical sectors, as this indicates familiarity with stringent purity and documentation requirements.