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(4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride

Base Information
  • Chemical Name:(4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride
  • CAS No.:1596117-29-1
  • Molecular Formula:C10H11N5*ClH
  • Molecular Weight:237.692
  • Hs Code.:
(4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride

Synonyms:(4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride

Suppliers and Price of (4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride
Supply Marketing:
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
  • Iris Biotech GmbH
  • MeTz-Bzl-NH2*HCl
  • 1 g
  • $ 1606.50
  • Iris Biotech GmbH
  • MeTz-Bzl-NH2*HCl
  • 500 mg
  • $ 864.00
  • Iris Biotech GmbH
  • MeTz-Bzl-NH2*HCl
  • 100 mg
  • $ 391.50
  • Iris Biotech GmbH
  • MeTz-Bzl-NH2*HCl
  • 25 mg
  • $ 229.50
Total 5 raw suppliers
Chemical Property of (4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride
Chemical Property:
Purity/Quality:

98%,99%, *data from raw suppliers

MeTz-Bzl-NH2*HCl *data from reagent suppliers

Safty Information:
  • Pictogram(s):  
  • Hazard Codes: 
MSDS Files:
Useful:
  • Uses The stability of Methyltetrazine-amine is substantially improved compared to hydrogen substituted tetrazine-amine. Superior stability of Methyltetrazine-amine allows this reagent to be used in a wider range of chemical transformations. Long-term storage of Methyltetrazine-amine, especially in aqueous buffer, is also greatly improved compared to tetrazine-amine. This reagent is supplied as an HCl salt for improved stability and easy handling.
Technology Process of (4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride

There total 3 articles about (4-(6-methyl-1,2,4,5-tetrazine-3-yl)phenyl)methanamine hydrochloride which guide to synthetic route it. The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:

synthetic route:
Guidance literature:
With hydrogenchloride; In 1,4-dioxane; dichloromethane; at 20 ℃; for 2h; Inert atmosphere;
DOI:10.1002/chem.201803839
Guidance literature:
Multi-step reaction with 2 steps
1.1: hydrazine; zinc trifluoromethanesulfonate / 80 °C / Inert atmosphere; Sealed tube
1.2: Inert atmosphere
2.1: hydrogenchloride / 1,4-dioxane; dichloromethane / 2 h / 20 °C / Inert atmosphere
With hydrogenchloride; zinc trifluoromethanesulfonate; hydrazine; In 1,4-dioxane; dichloromethane;
DOI:10.1002/chem.201803839
Guidance literature:
Multi-step reaction with 3 steps
1.1: sodium hydroxide / water / Inert atmosphere
2.1: hydrazine; zinc trifluoromethanesulfonate / 80 °C / Inert atmosphere; Sealed tube
2.2: Inert atmosphere
3.1: hydrogenchloride / 1,4-dioxane; dichloromethane / 2 h / 20 °C / Inert atmosphere
With hydrogenchloride; zinc trifluoromethanesulfonate; sodium hydroxide; hydrazine; In 1,4-dioxane; dichloromethane; water;
DOI:10.1002/chem.201803839
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