3,4-Dichlorophenyl isocyanate Cas 102-36-3

Chemical Name: 3,4-Dichlorophenyl isocyanate
Synonyms: 1,2-Dichloro-4-phenyl isocyanate; Isocyanic acid 3,4-dichlorophenyl ester
CAS No.: 102-36-3
Molecular Fomula: C7H3Cl2NO
Molecular weight: 188.01
Appearance: White solid

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Table of Contents

1. Product Overview: 3,4-Dichlorophenyl Isocyanate (CAS 102-36-3)

Core Specifications

Parameter Specification
Chemical Name 3,4-Dichlorophenyl isocyanate
CAS Number 102-36-3
Molecular Formula C7H3Cl2NO
Molecular Weight 192.01 g/mol
Appearance Clear colorless to pale yellow liquid
Purity ≥98.5% (GC)
Density 1.38 g/cm³ at 25°C
Boiling Point 247°C at 760 mmHg
Flash Point 113°C

2. Technical Parameter Comparison

Feature 3,4-Dichlorophenyl Isocyanate Phenyl Isocyanate 2,4-Dichlorophenyl Isocyanate
Reactivity High electrophilic character Moderate High
Thermal Stability Stable below 200°C Stable below 180°C Stable below 210°C
Solubility Miscible with organic solvents Similar profile Reduced polarity
Typical Applications Agrochemical intermediates Polyurethane production Pharmaceutical synthesis

3. Industrial Applications & Functional Uses

Primary Functional Roles

  • Agrochemical Synthesis: Key intermediate in production of carbamate insecticides and urea herbicides
  • Pharmaceutical Manufacturing: Building block for antitumor agents and enzyme inhibitors
  • Polymer Chemistry: Cross-linking agent in specialty polyurethanes

Reaction Mechanisms

  • Nucleophilic addition with amines/alcohols
  • Cyclization reactions under basic conditions
  • Catalytic coupling in heterocyclic compound synthesis

4. Operational Guidelines & Safety Protocols

Handling Requirements

Parameter Specification
Storage Temperature 2-8°C under inert atmosphere
Moisture Sensitivity Reacts violently with H2O
Personal Protection Chemical-resistant gloves + full face shield
Spill Management Neutralize with dry sand, never water

5. Verified Client Implementations

Case Study 1: Agrochemical Producer (Germany)

  • Challenge: Develop low-residual herbicide with 98% efficacy
  • Solution: Optimized coupling reaction using 3,4-Dichlorophenyl isocyanate
  • Outcome: 40% reduction in production costs vs traditional methods

Case Study 2: Pharmaceutical Developer (USA)

  • Objective: Create novel kinase inhibitor candidates
  • Process: Applied isocyanate in heterocyclic ring formation
  • Result: Achieved 72% yield improvement over previous synthesis routes

6. Expert Consultation & Custom Solutions

Technical Support Services

  • Custom synthesis scale-up protocols
  • Reaction optimization consulting
  • Regulatory compliance documentation

Contact Our Specialists:
Email: info@vivalr.com
Tel: (86) 15866781826

Request Product Documentation

  • Download SDS (Safety Data Sheet)
  • Access COA (Certificate of Analysis)
  • Request custom synthesis quotes
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