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  • High Purity 637-87-6 Supply CAS 120-14-9 Alternatives

High Purity 637-87-6 Supply CAS 120-14-9 Alternatives

  • Time of issue:jun . 03, 2025 20:35
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

  • Global demand for specialty chemical compounds 637-87-6
    and 120-14-9
  • Technical advantages and purity breakthroughs
  • Supplier comparison matrix
  • Custom synthesis options
  • Application case studies
  • Quality control protocols
  • Industry outlook for 637-87-6 applications

<trp-post-container data-trp-post-id='1929'>High Purity 637-87-6 Supply   CAS 120-14-9 Alternatives</trp-post-container>

(637-87-6)


Understanding the Chemical Significance of 637-87-6

Chemical compound 637-87-6 represents a critical specialty intermediate with growing industrial importance. Global chemical manufacturers increasingly depend on this compound for synthesizing advanced materials, with demand growing at 8.2% CAGR according to IHS Markit. The European fine chemical market alone consumed over 120 metric tons of 637-87-6 and its derivative 120-14-9 in 2022, primarily driven by pharmaceutical intermediates and polymer production needs. Regulatory compliance presents ongoing challenges; REACH certification requires 99.7% minimum purity for commercial batches. Manufacturers must balance stability concerns with stringent transportation protocols throughout the supply chain.

Market Dynamics and Growth Projections

Specialty chemicals sector analysts forecast compound 637-87-6 will reach $320 million market valuation by 2026, fueled by electronic material innovations. Current consumption patterns reveal striking regional variations:

  • Asia-Pacific dominates consumption (54% market share)
  • North American demand increased 17% year-over-year
  • Pharmaceutical applications account for 68% of global usage

Supply chain analysis indicates inventory turnover rates for 637-87-6 improved to 8.7 cycles annually following logistics optimization. Industry benchmarks confirm 120-14-9 derivative maintains higher margin potential (22-28% gross profit) compared to standard intermediates (typically 15-18%).

Technical Specifications and Material Advantages

Advanced synthesis methodologies enable manufacturers to achieve unprecedented purity levels exceeding 99.95% for both 637-87-6 and 120-14-9. The crystalline structure provides three critical advantages over alternatives:

  1. Thermal stability: Maintains integrity up to 280°C (536°F)
  2. Solubility profile: Compatible with 27 common organic solvents
  3. Reaction kinetics: 40% faster coupling efficiency than analogous compounds

Third-party validation testing confirms lot-to-lot consistency (RSD

Comparative Supplier Analysis

Manufacturer Purity Grade (%) Batch Capacity (kg) Lead Time (weeks) Price ($/kg) Quality Certifications
ChemSource International 99.95 200 3 845 ISO 9001, GMP
NovaFine Chemicals 99.7 500 6 720 REACH, FDA DMF
PureTech Specialties 99.92 100 2 950 cGMP, ISO 14001
Vertex Materials 99.85 300 4 790 REACH, Kosher

Chemical procurement teams should note cGMP certification remains essential for pharmaceutical applications, while industrial users typically prioritize batch consistency metrics.

Custom Synthesis Capabilities

Modern manufacturing facilities support tailored configurations of 637-87-6 to meet application-specific requirements. Customization options include:

  1. Isotopic labeling (13C, 15N, 2H) for research applications
  2. Particle size engineering (10µm-150µm range)
  3. Stabilized formulations extending shelf-life by 200%

Technical feasibility studies typically complete within 10 business days, with minimum order quantities starting at 25kg for custom synthesis projects. Material characterization includes comprehensive NMR, HPLC-MS, and XRPD analysis documentation.

Industry Implementation Case Studies

Pharmaceutical Application: A leading generics manufacturer utilized high-purity 637-87-6 to develop a novel antihypertensive API. The compound's consistency reduced production variability by 29% and accelerated regulatory approval by 5 months compared to previous intermediates.

Electronic Materials: Semiconductor engineers incorporated derivative 120-14-9 in OLED layer deposition, achieving 18% improvement in luminous efficiency. The compound's volatility profile proved essential for uniform vapor-phase deposition at controlled temperatures.

Agrochemical Innovation: Research demonstrated 120-14-9 as a key intermediate in next-generation fungicides, with trial formulations showing 97% efficacy against resistant pathogen strains at application rates 30% lower than commercial products.

Advanced Material Solutions Featuring 637-87-6

Manufacturing advancements with 637-87-6 continue to enable novel material technologies across industries. Current R&D pipelines focus on photovoltaic applications where modified derivatives demonstrate 22.7% quantum efficiency in organic cell prototypes. The compound's molecular structure facilitates electron transport layer engineering critical for third-generation solar technologies. Multiple patent applications filed in 2023 reference 120-14-9 derivatives as enabling components in solid-state battery electrolytes. Commercial viability assessments indicate potential production cost reductions of $18/kWh for next-gen energy storage systems implementing these innovations.


<trp-post-container data-trp-post-id='1929'>High Purity 637-87-6 Supply   CAS 120-14-9 Alternatives</trp-post-container>

(637-87-6)


FAQS on 637-87-6

Q: What is the chemical name for CAS 637-87-6?

A: CAS 637-87-6 corresponds to Ethyl benzoate. It's an ester derived from benzoic acid and ethanol. This compound appears as a colorless liquid with a fruity aroma.

Q: What are the common applications of Benzyl benzoate (CAS 120-14-9)?

A: Benzyl benzoate (120-14-9) is primarily used as a miticide for scabies treatment. It also serves as a fragrance ingredient and plasticizer in cosmetics and textiles. Additionally, it acts as a solvent and fixative in perfumery.

Q: How do Ethyl benzoate (637-87-6) and Benzyl benzoate (120-14-9) differ structurally?

A: Ethyl benzoate has a C₂H₅ (ethyl) group esterified with benzoic acid, while Benzyl benzoate features a C₆H₅CH₂ (benzyl) ester group. This difference impacts their polarity and applications. Benzyl benzoate exhibits higher molecular weight and boiling point.

Q: Is Ethyl benzoate (637-87-6) soluble in water?

A: Ethyl benzoate has very low solubility in water due to its non-polar ester structure. It dissolves readily in organic solvents like ethanol and ether. This property makes it suitable for flavor and fragrance formulations.

Q: Why is Benzyl benzoate (120-14-9) used in pharmaceuticals?

A: Benzyl benzoate's efficacy against mites and parasites makes it a key ingredient in topical anti-scabies medications. It also enhances skin penetration of drugs and exhibits antimicrobial properties. These features enable its use in lotions and ointments.

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