Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Eastman Di-N-Propylamine HP Di-N-Propylamine

Eastman Di-N-Propylamine HP is a high-purity secondary amine from Eastman’s specialty amines portfolio, offering low water content and exceptional batch-to-batch consistency. Widely used as a catalyst, corrosion inhibitor, and intermediate in agrochemicals and pharmaceuticals, it ensures superior reactivity and processing stability versus standard grades.
  • eastman di n propylamine hp di n propylamine_584a5cab
  • eastman di n propylamine hp di n propylamine_584a5cab

Features Of Eastman Di-N-Propylamine HP Di-N-Propylamine

  1. High-purity grade optimized for sensitive catalytic and pharmaceutical synthesis applications.

  2. Low water content (<0.1 wt%) to minimize side reactions in moisture-sensitive processes.

  3. Consistent batch-to-batch quality ensured by Eastman’s rigorous manufacturing controls.

  4. Superior amine functionality with minimal secondary amine impurities (≤0.3 wt%).

  5. Stabilized formulation for enhanced shelf life and handling safety under ambient storage conditions.

Typical Applications Of Eastman Di-N-Propylamine HP Di-N-Propylamine

  1. Catalyst ligand in transition-metal-catalyzed cross-coupling reactions (e.g., Buchwald–Hartwig amination).

  2. Building block for specialty agrochemical intermediates, including herbicidal and fungicidal active ingredients.

  3. Intermediate in the synthesis of high-performance polyurethane catalysts and curing agents.

  4. Raw material for pharmaceutical APIs requiring sterically hindered, non-nucleophilic tertiary amine motifs.

Specifications Of Eastman Di-N-Propylamine HP Di-N-Propylamine

Chemical TypeTertiary amine
Product FormLiquid
AppearanceClear, colorless to pale yellow liquid
Primary ApplicationsCatalysis, pharmaceutical intermediates, agrochemical synthesis
Key FeaturesHigh purity, low water, low secondary amine impurities
BenefitsImproved reaction selectivity, reduced catalyst loading, enhanced process reproducibility
Molecular Weight101.2 g/mol
Boiling Point (760 mmHg)149–151 °C


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