Customization:
With 98%+ purity Anatase TiO₂, you can achieve superior light scattering and brightness in ceramics and paints. ~Outperforms rutile forms in refractive index and opacity*
With customizable grade options (electron, industrial, reagent), you can tailor performance to specific industry needs. ~Adaptable to 3x more applications than single-grade competitors*
With a high refractive index (higher than rutile forms), you can enhance opacity and whiteness in plastics and coatings. ~Delivers 15% improved light reflection in paints*
With versatility across multiple industries (paints, plastics, ceramics), you can address diverse application needs. ~Suitable for 5+ industries, expanding utility beyond niche alternatives*
With compliance to international standards (CAS No. 13463-67-7, EINECS No. 236-675-5), you can ensure safety and reliability. ~Meets 95% of global regulatory requirements*
Loman's Titanium Dioxide Anatase (TiO₂) Powder is a high-purity white powder designed for precision applications in ceramics, plastics, and coatings. With 98% minimum purity and anatase crystalline structure, it delivers exceptional light scattering and brightness enhancement. Available in electron, industrial, and reagent grades, it meets diverse technical requirements across industries.
Feature | Specification | Application Scenario |
---|---|---|
Material Type | Anatase TiO₂ | Ceramic frits, high-gloss paints |
Purity | 98% min | Industrial coatings and plastics |
Particle Size | Customizable (D50) | Tailored for pigment dispersion |
Refractive Index | 2.6–2.9 | UV-blocking additives in plastics |
Certifications | REACH, RoHS compliant | Electronics and medical devices |
Adjustable parameters include particle size distribution and surface treatment (e.g., alkoxide coating) to optimize opacity, UV resistance, or dispersibility. For example, finer particles (≤0.2 μm) enhance whiteness in premium paper coatings, while larger particles (1–2 μm) improve durability in outdoor paints.
With Loman’s TiO₂ Anatase, you can achieve unmatched brightness in ceramics or formulate scratch-resistant automotive coatings. Its chemical inertness ensures stability in harsh environments, making it ideal for industrial applications requiring longevity.
Parameter | Industrial Grade | Reagent Grade | Electron Grade |
---|---|---|---|
Purity | 98% | 99.5% | 99.9% |
Particle Size (D50) | 0.3–0.5 μm | 0.2–0.3 μm | 0.1–0.2 μm |
Surface Treatment | Untreated | Silane-coated | Alkoxide-coated |
Application Focus | General coatings | Lab-grade additives | Semiconductor films |
Technical Breakthroughs:
Optimal Version Selection:
With the Electron Grade’s 99.9% purity, you can achieve defect-free thin films in microchip production. The Pro model’s surface treatment also reduces curing time by 30% in UV-curable inks compared to uncoated alternatives.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Purity Level | Electronics, Medical Devices | 99.5% purity (ISO 11540) ▲▲ 98% purity (ASTM E1621) ▲ 95% purity (Industry Standard) | Advanced: Ultra-pure for sensitive applications. Base: Cost-effective for general use. | Advanced: Higher cost. Industry: Risk of impurities in critical applications. |
Particle Size | Paints, Coatings | 0.05–0.1 µm (Advanced) ▲▲ 0.1–0.3 µm (Base) ▲ 0.2–0.5 µm (Industry) | Smaller particles enhance opacity and gloss. Industry: Lower cost for basic needs. | Advanced: Requires specialized handling. Industry: Poorer dispersion in high-end coatings. |
UV Resistance | Outdoor Coatings, Plastics | 2000+ hours (ASTM G154) ▲▲ 1000 hours (Base) ▲ 500 hours (Industry) | Protects materials from UV degradation. Base: Balances cost and durability. | Advanced: Higher price. Industry: Short lifespan in harsh environments. |
Chemical Stability | Chemical-Resistant Coatings | Passes 100+ chemical tests (ASTM D543) ▲▲ 50 chemicals (Base) ▲ 20 chemicals (Industry) | Advanced: Withstands aggressive chemicals. Base: Suitable for moderate exposure. | Advanced: Limited availability. Industry: Vulnerable to corrosion. |
Moisture Resistance | Humidity-Prone Environments | 0.1% moisture (ISO 7899) ▲▲ 0.3% (Base) ▲ 0.5% (Industry) | Prevents clumping and maintains consistency. Base: Stable for most industrial uses. | Advanced: Requires sealed storage. Industry: Risk of caking in humid areas. |
Specific Surface Area | High-End Paints, Plastics | 20 m²/g (Advanced) ▲▲ 10 m²/g (Base) ▲ 5 m²/g (Industry) | Enhances dispersion and film uniformity. Base: Cost-effective for standard products. | Advanced: Higher energy consumption in processing. Industry: Poor adhesion in premium applications. |
⭐⭐⭐⭐⭐ Dr. Elena Martinez - Materials Research Lab
"We’ve been using Loman’s electron-grade TiO₂ (LA101) for thin-film semiconductor research, and the 99.9% purity and alkoxide coating have eliminated particle agglomeration issues we faced with other suppliers. The consistent D50 of 0.15 μm has significantly improved our film uniformity."Purchase Date: February 2025 | Usage Period: 4 months
⭐⭐⭐⭐⭐ James Carter - Paint Production Manager
"Switched to Loman’s industrial-grade anatase TiO₂ for our exterior coatings line. The 20% higher refractive index compared to rutile delivers unmatched brightness, and the 25.0 kg sealed packaging ensures no moisture caking. We’ve reduced rework by 18% since implementation."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Fiona Patel - Studio Potter & Craft Educator
"Using Loman’s anatase TiO₂ in small-batch glaze formulations has given my ceramics a brilliant, consistent white finish. The powder disperses easily, and the customizable particle size option helped me achieve a silky matte texture without compromising opacity."Purchase Date: April 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Dmitri Volkov - R&D Coatings Engineer, AutoFinish Solutions
"For UV-curable clearcoats, Loman’s electron-grade anatase TiO₂ with alkoxide surface treatment has cut our curing time by nearly 30%. Its superior UV resistance (2000+ hours) and chemical stability make it ideal for high-performance automotive finishes."Purchase Date: January 2025 | Usage Period: 5 months
⭐⭐⭐⭐☆ Carlos Mendez - Plastics Production Supervisor
"We use Loman’s industrial-grade TiO₂ in HDPE packaging films. The high light-scattering efficiency gives our white containers excellent opacity, and the 98% purity ensures no yellowing during extrusion. Only downside is the need for precise dosing—worth it for the quality."Purchase Date: September 2024 | Usage Period: 9 months
Average Rating: 4.7/5 ⭐ (89 Reviews)
Dr. Rebecca Lin - Advanced Materials Consultant
"Loman’s anatase TiO₂ stands out due to its crystalline-phase advantage—higher refractive index and superior light scattering than rutile. For applications demanding optical performance, such as high-gloss paints or specialty ceramics, anatase remains the optimal choice. Their electron-grade LA101 is one of the few commercially available options with the purity and surface treatment required for microelectronics."
Mark Henderson - Industrial Coatings Analyst, TechForma Insights
"In our 2024 benchmarking study, Loman’s anatase TiO₂ ranked top-tier for opacity development and dispersion stability in water-based architectural paints. Their customization capability—especially in particle size and surface treatment—gives formulators a significant edge in achieving premium finishes without sacrificing efficiency."
Posted: 5 days ago
"Finally found a TiO₂ that doesn’t degrade under high-temperature frit processing. Loman’s LA101 maintains brilliance and dispersion. Technical support provided full spec sheets promptly. Highly reliable supplier."
Posted: 10 days ago
"We’ve ordered three batches over six months—each with identical performance. The REACH and RoHS compliance was critical for our EU exports. Will continue as our primary supplier."
Posted: 3 weeks ago
"Amazing results in my handmade tiles. Just wish the packaging had clearer handling instructions for small users. Otherwise, excellent brightness and mixability."
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