Cas no 13674-83-4 (1-Chloro-2-propanol Phosphorochloridate)

1-Chloro-2-propanol Phosphorochloridate structure
13674-83-4 structure
Product Name:1-Chloro-2-propanol Phosphorochloridate
CAS No:13674-83-4
MF:C6H12Cl3O3P
MW:269.490440368652
CID:1063215
Update Time:2025-11-02

1-Chloro-2-propanol Phosphorochloridate Chemical and Physical Properties

Names and Identifiers

    • 1-Chloro-2-propanol Phosphorochloridate
    • Phosphorochloridic acid, bis(2-chloro-1-methylethyl) ester (8CI,9CI)
    • Inchi: 1S/C6H12Cl3O3P/c1-5(3-7)11-13(9,10)12-6(2)4-8/h5-6H,3-4H2,1-2H3
    • InChI Key: ITVAVCZXFIPOFV-UHFFFAOYSA-N
    • SMILES: P(Cl)(OC(C)CCl)(OC(C)CCl)=O

Computed Properties

  • Exact Mass: 267.959
  • Monoisotopic Mass: 267.959
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 3
  • Heavy Atom Count: 13
  • Rotatable Bond Count: 6
  • Complexity: 174
  • Covalently-Bonded Unit Count: 1
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 2
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 35.5A^2

Experimental Properties

  • Solubility: Soluble in chloroform

1-Chloro-2-propanol Phosphorochloridate Pricemore >>

Related Categories No. Product Name Cas No. Purity Specification Price update time Inquiry
TRC
C380225-1mg
1-Chloro-2-propanol Phosphorochloridate
13674-83-4
1mg
$ 242.00 2023-09-08
TRC
C380225-5mg
1-Chloro-2-propanol Phosphorochloridate
13674-83-4
5mg
$ 471.00 2023-09-08
TRC
C380225-25mg
1-Chloro-2-propanol Phosphorochloridate
13674-83-4
25mg
$ 1409.00 2023-09-08

Additional information on 1-Chloro-2-propanol Phosphorochloridate

Comprehensive Analysis of 1-Chloro-2-propanol Phosphorochloridate (CAS No. 13674-83-4): Properties, Applications, and Industry Trends

1-Chloro-2-propanol Phosphorochloridate (CAS 13674-83-4) is a specialized organophosphorus compound gaining attention in advanced chemical synthesis and material science. With the molecular formula C3H7Cl2O2P, this reactive intermediate exhibits unique properties that make it valuable for pharmaceutical intermediates, flame retardant formulations, and polymer modification. Recent studies highlight its role in developing sustainable chemical processes, aligning with the global push for green chemistry solutions.

The compound's phosphorochloridate functional group enables selective reactions under mild conditions, making it a preferred choice for controlled esterification and crosslinking applications. Industry reports indicate growing demand for 13674-83-4 in high-performance coatings and electronic materials, particularly in Asia-Pacific markets. Analytical techniques like GC-MS and NMR spectroscopy confirm its high purity (>98%), with storage recommendations emphasizing anhydrous conditions at 2-8°C to maintain stability.

Emerging research explores 1-Chloro-2-propanol Phosphorochloridate's potential in bioconjugation chemistry, where its dual reactivity facilitates protein labeling and drug delivery systems. A 2023 study published in Advanced Synthesis & Catalysis demonstrated its efficiency in stereoselective synthesis, achieving 92% yield with minimal byproducts. Environmental considerations drive innovation in waste minimization protocols during production, addressing regulatory concerns about chemical manufacturing sustainability.

Market analysis reveals increasing patent filings involving CAS 13674-83-4, particularly for photoresist components in semiconductor manufacturing. The compound's low volatility (vapor pressure: 0.12 mmHg at 25°C) and controlled reactivity make it suitable for microelectronics applications. Quality standards require rigorous testing for chloride content and hydrolytic stability, with advanced packaging solutions now utilizing nitrogen-purged ampoules for oxygen-sensitive shipments.

Technical discussions frequently address 13674-83-4 solubility characteristics (soluble in THF, acetonitrile; insoluble in water) and handling precautions for industrial-scale operations. Recent process optimizations have reduced production costs by 18% through catalytic efficiency improvements, as documented in Industrial & Engineering Chemistry Research. The compound's thermal decomposition profile (onset at 145°C) enables safe processing in high-temperature polymerizations.

Future applications may leverage 1-Chloro-2-propanol Phosphorochloridate's molecular architecture for smart material development, including stimuli-responsive polymers and self-healing coatings. Collaborative research between academic institutions and chemical manufacturers continues to explore novel derivatives with enhanced biocompatibility for medical device coatings. Analytical method development remains crucial, with HPLC-UV emerging as the gold standard for purity verification in commercial batches.

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