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  • Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12
  • Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12
  • Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12
  • Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12
  • Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12
Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12

Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12

  • >= 1 Kilograms
    $2.50

Customization:

Customized logo(Min.Order: 10 pieces)
Customized packaging(Min.Order: 10 pieces)
Graphic customization(Min.Order: 10 pieces)

Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Chemical Application: High-purity ferric oxalate (iron oxalate pentahydrate/diiron trioxalate) designed for specialized industrial, laboratory, and electronic manufacturing processes.
  • Grade-Specific Uses:
    • Electron Grade: Critical for precision applications like circuit board etching and semiconductor manufacturing.
    • Reagent Grade: Ideal for analytical chemistry, chemical synthesis, and academic research.
    • Industrial Grade: Versatile for large-scale coating, dyeing, and metal treatment processes.

Key features

  • 1. High-Purity Material Technology

  • With electron-grade ferric oxalate powder, achieve ultra-pure chemical reactions critical for semiconductor manufacturing and precision实验室 applications. Its 99% purity ensures minimal impurities compared to standard industrial grades*, enabling reliable performance in sensitive processes.

  • 2. Uniform Particle Consistency

  • With a fine, uniform yellow powder texture, ensure seamless dispersion and homogeneous mixing in formulations. This consistency outperforms uneven powders in applications like pigment blending or chemical synthesis, reducing waste and improving efficiency*.

  • 3. Grade-Specific Performance Flexibility

  • Available in electron, reagent, and industrial grades, this product adapts to diverse needs—from high-precision electronics to large-scale industrial processes. The reagent grade, for instance, offers superior purity for laboratory analysis compared to industrial variants*.

  • 4. Versatile Scenario Solutions

  • Designed for specialized applications, electron-grade ferric oxalate excels in semiconductor etching, while industrial-grade formulations support high-volume manufacturing. Its adaptability addresses both research and commercial demands more effectively than single-purpose oxalates*.

  • 5. Certified Quality Assurance

  • Backed by electron-grade and reagent-grade certifications, this product meets stringent purity and safety standards for critical industries. These certifications surpass basic industrial-grade requirements, ensuring compliance in regulated environments*.

  • Notes:

    • The product’s powder form and oxalate classification emphasize its role in chemical synthesis, electronics, and laboratory settings.

Product details

Factory 99% Ferric Oxalate / Iron Oxalate Pentahydrate / Diiron Trioxalate CAS 2944-66-3 C6Fe2O12

Factory 99% Ferric Oxalate (Iron Oxalate Pentahydrate/Diiron Trioxalate) is a high-purity organic salt designed for diverse industrial, laboratory, and electronic applications. Its uniform yellow powder form ensures consistent performance in demanding environments. Available in three grades—electron, reagent, and industrial—this product meets stringent quality standards while maintaining cost-efficiency for specific use cases.

Technical specifications

FeatureSpecificationBenefit
Chemical IdentityCAS 2944-66-3, C₆Fe₂O₁₂Industry-recognized standard for traceability
Purity99% minimum (varies by grade)Ensures reliability in critical processes
Grade StandardsElectron Grade, Reagent Grade, Industrial GradeTailored performance for specialized applications
AppearanceFine, uniform yellow powderFacilitates even dispersion in formulations
Particle Size<150 µm (consistent distribution)Optimized for precision mixing and coating

Customization guide

Adjustable parameters:

  • Grade selection: Choose between electron-grade (99.99% purity) for semiconductor manufacturing, reagent-grade (99.5%) for laboratory analysis, or industrial-grade (98%) for bulk applications.
  • Packaging: Customize container sizes to reduce handling costs for large-scale production.

Get inspired

From enhancing electronic components to stabilizing chemical reactions, Ferric Oxalate’s versatility makes it a cornerstone in advanced manufacturing. Its fine, uniform texture ensures seamless integration into coatings, pigments, and analytical reagents, enabling precise outcomes across industries.

Choose your model

ParameterBase Model (Industrial Grade)Advanced Model (Reagent Grade)Pro Model (Electron Grade)
Purity98%99.5%99.99%*
Application SuitabilityGeneral manufacturingLab testingSemiconductor fabrication
Compliance StandardsISO 9001ASTM E100-19SEMI S2

Supplier's note

  1. Key Technical Breakthroughs:

    • Ultra-high purity (99.99%): The Pro Model’s purity exceeds industry benchmarks by 30%, enabling contamination-free semiconductor processing.
    • Particle uniformity: Consistent <150 µm particle size ensures stable performance in pigment blending and electroplating.
    • Grade-specific compliance: Each model meets tailored standards (e.g., SEMI S2 for electronics), reducing quality risks.
  2. Optimal Version Selection:

    • Electronics manufacturers: Opt for the Pro Model to leverage its SEMI-certified purity for photomask etching or sensor fabrication.
    • Research labs: The Advanced Model balances precision (99.5% purity) with affordability for analytical experiments.
    • Industrial users: The Base Model offers cost-effective solutions for coating or filler applications where lower purity suffices.

*Pro Model purity exceeds ISO 9001 standards by 20%.

Frequently asked questions

  • Which grade of Ferric Oxalate Powder is best suited for electronics manufacturing applications?

  • How does Ferric Oxalate Powder compare to other iron-based compounds in chemical synthesis?

  • Is your Ferric Oxalate Powder FDA-approved for food or pharmaceutical use?

  • Can you customize the particle size of Ferric Oxalate Powder for specialized coating applications?

  • What safety precautions are required when handling Ferric Oxalate Powder?

  • What are the key differences between electron grade and industrial grade Ferric Oxalate?

  • How does the pentahydrate form of Ferric Oxalate benefit photochemical processes?

  • Can your Ferric Oxalate Powder be used in battery cathode materials research?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Purity LevelElectronics manufacturing, semiconductor production- Industry Standard (Reagent Grade): 99% purity (ASTM E1751)
- Our Base (Industrial Grade): 99% purity (ISO 3696)
- Our Advanced (Electron Grade): 99.99% purity (ISO 3696 Grade 1) ▲▲
Electron Grade minimizes contamination in precision devices; Industrial Grade cost-effective for bulk useElectron Grade’s premium cost may limit affordability; Industrial Grade risks impurities in sensitive applications
Particle SizeCoating materials, chemical synthesis- Industry Standard (Reagent Grade): <75µm (ISO 13320)
- Our Base (Industrial Grade): <100µm (ISO 13320)
- Our Advanced (Electron Grade): <50µm (ISO 13320) ▲
Smaller particles in Electron Grade ensure uniform dispersion; Industrial Grade easier to handle in large quantitiesSmaller particles require specialized storage; Industrial Grade less suitable for precision applications
Moisture ContentHumidity-sensitive manufacturing- Industry Standard (Reagent Grade): <0.5% (ASTM D4483)
- Our Base (Industrial Grade): <1.0% (ASTM D4483)
- Our Advanced (Electron Grade): <0.2% (ASTM D4483) ▲▲
Electron Grade prevents clumping in moisture-sensitive processes; Industrial Grade acceptable for non-critical usesElectron Grade requires desiccated storage; Industrial Grade may degrade faster in humid conditions
Application SuitabilityElectronics, Research, Industrial Manufacturing- Industry Standard (Reagent Grade): General lab/industrial use
- Our Base (Industrial Grade): Mass production
- Our Advanced (Electron Grade): High-precision electronics ▲
Electron Grade tailored for cutting-edge tech; Industrial Grade versatile for bulk needsElectron Grade limited to specialized uses; Industrial Grade insufficient for quality-sensitive projects
Cost EfficiencyBudget-sensitive projects- Industry Standard (Reagent Grade): Moderate cost
- Our Base (Industrial Grade): Lowest cost (▲▲ vs Electron)
- Our Advanced (Electron Grade): Highest cost (▲▲▲ vs Industrial)
Industrial Grade reduces expenses for bulk use; Electron Grade justifies cost in premium productsElectron Grade may exceed budgets; Industrial Grade not suitable for high-end applications
Regulatory ComplianceExport-driven industries- Industry Standard (Reagent Grade): Meets ISO 3696
- Our Base (Industrial Grade): Complies with ASTM D4483
- Our Advanced (Electron Grade): Exceeds ISO 3696 Grade 1 ▲
Electron Grade meets global export standards; Industrial Grade sufficient for local complianceElectron Grade may require additional certifications; Industrial Grade may fail international audits

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