-
Categories
-
Pharmaceutical Intermediates
-
Active Pharmaceutical Ingredients
-
Food Additives
- Industrial Coatings
- Agrochemicals
- Dyes and Pigments
- Surfactant
- Flavors and Fragrances
- Chemical Reagents
- Catalyst and Auxiliary
- Natural Products
- Inorganic Chemistry
-
Organic Chemistry
-
Biochemical Engineering
- Analytical Chemistry
-
Cosmetic Ingredient
- Water Treatment Chemical
-
Pharmaceutical Intermediates
Promotion
ECHEMI Mall
Wholesale
Weekly Price
Exhibition
News
-
Trade Service
6,7-Dimethoxyisoquinoline is a commonly used organic compound in various industries, including the pharmaceutical and chemical industries.
The compound is known for its unique properties and versatility, which makes it an essential component in several chemical synthesis reactions.
The production process of 6,7-dimethoxyisoquinoline involves several steps that require careful planning, execution, and control to ensure the quality and purity of the final product.
The first step in the production process of 6,7-dimethoxyisoquinoline is the synthesis of anthranilic acid.
Anthranilic acid is a starting material used in the production of several organic compounds, including 6,7-dimethoxyisoquinoline.
The synthesis of anthranilic acid involves several steps, including the reaction of chloroacetone with benzaldehyde in the presence of sodium hydroxide.
The reaction produces anthranilic acid, which is then purified and dried to remove any impurities.
The next step in the production process of 6,7-dimethoxyisoquinoline is the synthesis of 4-nitroanthranilic acid.
The synthesis of 4-nitroanthranilic acid involves the reaction of anthranilic acid with nitric acid in the presence of sulfuric acid.
The reaction produces 4-nitroanthranilic acid, which is then purified and dried to remove any impurities.
The next step in the production process of 6,7-dimethoxyisoquinoline is the synthesis of 2,3-dimethoxybenzaldehyde.
The synthesis of 2,3-dimethoxybenzaldehyde involves the reaction of 2,3-dimethoxybenzene with hydrogenation in the presence of a catalyst.
The reaction produces 2,3-dimethoxybenzaldehyde, which is then purified and dried to remove any impurities.
The final step in the production process of 6,7-dimethoxyisoquinoline is the synthesis of the title compound.
The synthesis of 6,7-dimethoxyisoquinoline involves several steps, including the reaction of 2,3-dimethoxybenzaldehyde with hydrogen peroxide in the presence of a catalyst.
The reaction produces 6,7-dimethoxyisoquinoline, which is then purified and dried to remove any impurities.
In conclusion, the production process of 6,7-dimethoxyisoquinoline involves several steps that require careful planning, execution, and control to ensure the quality and purity of the final product.
The compound is an essential component in several chemical synthesis reactions and is widely used in various industries.
The production process of 6,7-dimethoxyisoquinoline is a complex and multi-step process that requires the use of specialized equipment and the expertise of skilled professionals to ensure the safety and efficiency of the production process.