The Complete Guide to 4-Acetylamino-6-methyl-3-oxotriazine (Triazinamide)

1. Full Identification & Nomenclature Core Registry Data Molecular Coding (Copyable Text) Triazinamide Molecular Structure 2. Molecular Structural Characteristics 3. Complete Physical & Chemical Properties Physical Index 表格 Parameter Standard Value Supplementary Note Appearance White / off-white crystalline powder Industrial purified solid Melting Point 218–224 °C Decomposes immediately upon melting Read more

Triazinamide vs Melamine: Key Differences Between Two Triazine Compounds

1. Basic Identification & Structure Triazinamide (CAS 136738-23-3) Melamine (CAS 108-78-1) 2. Physical & Thermal Properties Item Triazinamide Melamine Appearance White crystalline powder White crystalline crystal Melting behavior 218–224°C, decomposes on melting Sublimes ~354°C without melting at normal pressure LogP -0.708, strongly hydrophilic LogP≈-1.37, highly water-soluble Thermal stability Decomposes over Read more

triazinamide

Full Chemical Introduction to Triazinamide (CAS 136738-23-3)

1. Basic Identification & Nomenclature Core Registry Data Molecular Coding 2. Molecular Structure & Skeleton Features 3. Physical-Chemical Properties Property Parameter Note Appearance White / off-white crystalline powder Industrial grade solid Predicted Density 1.43 ± 0.1 g/cm³ Computational calculation value Partition Coefficient (LogP) -0.708 Strong hydrophilicity, soluble in water Predicted Read more

Synthetic Routes of Triazinamide

1. Dominant Industrial Route (Hydrazinolysis of Acetonyloxadiazolone) This is the only mass-production process adopted worldwide. 2. Improved High-Purity Pentanol Solvent Process (Fine Purification Grade) High-temperature reaction in pentanol at 100°C with dropwise addition of hydrazine hydrate. Cyclohexanone aids water separation and impurity removal, then low-temperature precipitation and filtration. 3. Obsolete Read more

Synthetic Methods of Pymetrozine

1. Dominant Industrial Route (Ethyl Acetate Route, over 95% global capacity) This mature process relies on triazinamide (P4) as the exclusive core intermediate for building the triazinone parent ring. Features: Low-cost raw materials, stable operation, total yield 50%–55%; triazinamide is irreplaceable in mass production. 2. Obsolete Trifluoroethyl Acetate Route It also forms Read more

Why Triazinamide is the Core and Almost Exclusive Intermediate for Pymetrozine

From the perspectives of molecular structure, production process, cost and industrial application, triazinamide is irreplaceable for manufacturing pymetrozine. 1. Molecular Structure: Direct Precursor of the Triazinone Core The pymetrozine molecule consists of a triazinone ring and a pyridine ring linked by methyleneamino groups. Triazinamide inherently contains the 4-acetamido-6-methyl-1,2,4-triazin-3-one skeleton. It Read more

Pymetrozine & Triazinamide

Brief Relationship Triazinamide is the core and almost exclusive intermediate for industrial production of pymetrozine. Product Introduction 1. Triazinamide (Intermediate) Chemical name: 4-acetamido-6-methyl-3-oxo-2,3,4,5-tetrahydro-1,2,4-triazine Molecular formula: C₆H₁₀N₄O₂, Molecular weight: 170.17 Appearance: White crystalline powder Alias: P4 intermediate of pymetrozine 2. Pymetrozine (End Pesticide) Developed by Syngenta in 1988. Molecular formula: C₁₀H₁₁N₅O, Read more

Market Prospect of Triazinamide

Overall, its market maintains steady growth with promising long-term prospects. China is the world’s major producer and exporter. Driven by the demand for pymetrozine, green pesticides, pharmaceuticals and fine chemicals, the market will keep expanding. Core Data (2024-2031) The global market value stood at about RMB 460 million in 2024 Read more