Dipotassium Titanium Oxide Dioxalate CAS 14481-26-6

Chemical Name: Dipotassium titanium oxide dioxalate
Synonyms: Potassium titanium oxalate
CAS No.: 14481-26-6
Molecular Fomula: C6K2O12Ti
Molecular weight: 390.12
Appearance: White powder

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Dipotassium Titanium Oxide Dioxalate (CAS 14481-26-6): Comprehensive User Guide

1. Product Overview & Specifications

Dipotassium Titanium Oxide Dioxalate (CAS 14481-26-6) is a specialized coordination compound with the molecular formula K2TiO(C2O4)2·2H2O. This white crystalline powder exhibits exceptional solubility in aqueous solutions, making it ideal for advanced material synthesis.

Parameter Specification
Molecular Weight 394.14 g/mol
Appearance White crystalline powder
Solubility >95% in water (20°C)
pH (1% solution) 3.5-4.5
Storage Conditions Ambient temperature, dry environment

2. Key Applications & Industrial Uses

Core Functional Advantages:

  • Precursor for titanium oxide nanomaterials synthesis
  • Catalyst in organic oxidation reactions
  • Cross-linking agent in polymer chemistry
  • Surface modification agent for metal substrates

Industry-Specific Implementations:

  • Photovoltaics: DSSC (Dye-Sensitized Solar Cell) manufacturing
  • Electronics: Conductive oxide layer deposition
  • Ceramics: Low-temperature sintering additive
  • Textiles: UV-protective fabric treatment

3. Performance Comparison with Alternatives

Feature K2TiO(C2O4)2 TiCl4 TiO2 Nanoparticles
Aqueous Solubility High Low Insoluble
Processing Temperature <100°C >400°C >600°C
Surface Modification Capacity Excellent Moderate Poor

4. Implementation Case Studies

Case A: Transparent Conductive Films Production

Challenge: Achieving <5 Ω/sq resistivity with >85% visible light transmission
Solution: 0.1M solution spin-coating followed by thermal decomposition at 150°C
Result: 3.2 Ω/sq resistivity with 88% transmittance at 550nm

Case B: Catalytic Wastewater Treatment

Challenge: Organic pollutant degradation below 10ppm concentration
Solution: Photocatalytic system with 0.5% wt catalyst loading
Result: 98.7% degradation efficiency within 120 minutes

5. Client Success Stories

Client 1: SolarTech Innovations (USA)

Application: DSSC photoanode fabrication
Implementation: Automated dip-coating process
Metrics: 14.2% cell efficiency (+18% vs previous formulation)

Client 2: Ceramic Arts Co. (Germany)

Application: Low-T ceramic glazes
Implementation: 2-3% additive in frit composition
Metrics: Sintering temp reduced from 850°C to 720°C

6. Technical Inquiry & Support

Contact our material science experts for:
– Custom concentration formulations
– Application-specific technical protocols
– Bulk order specifications

Direct Contact:
Email: info@vivalr.com
Phone: (86) 15866781826

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