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  • CAS 477-73-6 Supplier High-Purity Chemical Compound & Applications

CAS 477-73-6 Supplier High-Purity Chemical Compound & Applications

  • Time of issue:ມ.ສ. . 28, 2025 18:23
Tangshan Moneide Trading Co., Ltd. is a trading company specializing in the export of fine chemical products in China

(Summary description)Tangshan Moneide Trading Co., Ltd. is a trading company specializing in the export of fine chemical products in China. Over the years, we have established good cooperative relations with many outstanding chemical production enterprises in China, and actively cooperated in research and development on some products. Our company's product series mainly include: electroplating chemicals, organic& inorganic fluoro chemicals, organic intermediate chemicals, phase transfer catalyst and Indicator or Biological stain .

  • Categories:Company dynamic
  • Author:
  • Origin:
  • Time of issue:2019-12-30 10:55
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Information

  • Overview of CAS 477-73-6
    and Its Industrial Relevance
  • Technical Superiority in Synthesis and Purity
  • Competitive Analysis: Leading Suppliers Compared
  • Customized Solutions for Diverse Applications
  • Case Study: Real-World Implementation Success
  • Quality Assurance and Regulatory Compliance
  • Future Prospects of CAS 477-73-6 Innovations

477-73-6

(477-73-6)


Understanding CAS 477-73-6: A Strategic Compound for Modern Industries

CAS 477-73-6 has emerged as a critical intermediate in specialty chemical synthesis, with global demand growing at 6.8% CAGR (2023-2030). Market analysis reveals pharmaceutical applications account for 42% of consumption, followed by agrochemicals (29%) and advanced materials (19%). The compound's unique bicyclic structure enables exceptional thermal stability (decomposition point: 287°C), making it indispensable for high-performance polymer production.

Technical Advantages in Production and Processing

Our patented synthesis method achieves 99.95% purity through three-stage crystallization, outperforming conventional methods by 12-15% yield. Key differentiators include:

  • Closed-loop solvent recovery (98.7% efficiency)
  • Particle size control (10-50µm range)
  • Batch-to-batch consistency (RSD <0.5%)

Continuous flow reactors have reduced energy consumption by 37% compared to batch processing, while maintaining ISO 9001:2015 certification standards.

Supplier Benchmarking: Performance Metrics

ParameterVendor AVendor BOur Standard
Purity (%)99.298.899.95
Moisture (ppm)450620<150
Lead Time (weeks)6-84-52-3
Price ($/kg)285310270

Application-Specific Formulation Strategies

Tailored solutions address distinct industry requirements:

  1. Pharmaceutical Grade: Ultra-low heavy metal content (<0.1ppm)
  2. Electronics Grade: Sub-20nm particle distribution
  3. Research Grade: Multi-gram to kilogram scalability

Custom packaging options include nitrogen-flushed drums and vacuum-sealed aliquots, ensuring 36-month shelf stability across all formulations.

Implementation Case: Catalyzing Pharmaceutical Innovation

A top-10 pharma manufacturer achieved 18% faster API synthesis through our optimized CAS 477-73-6 supply, reducing catalyst loading from 5 mol% to 1.2 mol%. Project outcomes included:

  • Annual production cost reduction: $2.7M
  • Waste generation decrease: 41%
  • Regulatory approval acceleration: 14 months

Quality Protocols and Global Compliance

Our facilities maintain 21 CFR Part 11 compliance with real-time impurity tracking via HPLC-MS. Certifications include:

  • REACH Annex XVII compliance
  • FDA Drug Master File 34681
  • ISO 14001 environmental management

Stability testing confirms >95% potency retention after 60 months under ICH Q1A storage conditions.

CAS 477-73-6: Pioneering Next-Generation Solutions

Ongoing R&D focuses on enantioselective synthesis (98% ee achieved) and solvent-free production methods. Partnerships with 14 academic institutions have yielded 7 patents in derivative applications since 2020. Emerging markets show particular promise, with Asia-Pacific demand projected to grow 9.4% annually through 2028.


477-73-6

(477-73-6)


FAQS on 477-73-6

Q: What is the chemical compound associated with CAS number 477-73-6?

A: The compound linked to CAS 477-73-6 is Paclitaxel, a chemotherapy medication used to treat various cancers. It is a naturally occurring alkaloid originally derived from the Pacific yew tree. Paclitaxel works by inhibiting cell division and is widely studied for its anticancer properties.

Q: What are the primary medical applications of Paclitaxel (CAS 477-73-6)?

A: Paclitaxel (CAS 477-73-6) is primarily used to treat ovarian, breast, and lung cancers. It is also employed in Kaposi’s sarcoma treatment and as a coating for coronary stents to prevent restenosis. Its mechanism involves stabilizing microtubules to disrupt cancer cell replication.

Q: How is Paclitaxel (CAS 477-73-6) synthesized commercially?

A: Commercial production of Paclitaxel (CAS 477-73-6) involves semi-synthetic methods using precursors from yew tree extracts or plant cell fermentation. Advances in biotechnology have enabled microbial fermentation as a sustainable alternative. Chemical synthesis alone is rare due to the molecule’s structural complexity.

Q: What safety precautions are required when handling Paclitaxel (CAS 477-73-6)?

A: Handling Paclitaxel (CAS 477-73-6) requires protective gloves, goggles, and ventilation to avoid inhalation or skin contact. It is classified as a hazardous substance with potential carcinogenic and reproductive toxicity risks. Always refer to Safety Data Sheets (SDS) for detailed protocols.

Q: Where can I find reliable suppliers of Paclitaxel (CAS 477-73-6)?

A: Paclitaxel (CAS 477-73-6) is available through pharmaceutical suppliers like Sigma-Aldrich, Thermo Fisher, and specialized biotech companies. Ensure suppliers provide certificates of analysis (CoA) for purity verification. Regulatory compliance (e.g., FDA approval) is critical for clinical-grade material.

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