Customized Chemical Mechanical Polishing CMP Slurry Sub Nanometer LCD Panel
Product Details
| Particle Size: | 1.0±0.2μm | CAS No.: | 1306-38-3 |
|---|---|---|---|
| CeO₂: | 63~68% | Suspension Rate: | High |
| PH Range: | 7-10 | Formulation: | Customized |
| Highlight |
LCD tungsten cmp slurry,sub nanometer tungsten cmp slurry,LCD chemical mechanical polishing slurry |
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Product Description
Customized Polishing Slurry for LCD Panel Manufacturing
Description
Engineered for the stringent demands of display technologies, our customized cerium oxide slurries provide the high-precision finishing required for high-generation LCD and liquid crystal glass substrates. As automotive and consumer electronics move toward ultra-thin and curved profiles, our slurries deliver the sub-nanometer flatness and surface integrity essential for uniform light transmission.
Core Performance Advantages
Achieves surface roughness as low as 0.23 nm, far exceeding the industry rating of 0.9 nm for precision glass surfaces.
CMP Efficiency: Combines mechanical abrasion with a chemical reaction to enable rapid, damage-free detachment of silicate glass, resulting in faster production throughput.
Ultra-Thin Substrate Compatibility: Specifically optimized for the "ultra-thinning" trend, allowing for uniform processing of LCD substrates down to a minimum thickness of 0.1 mm.
Superior Dispersion Stability: Utilizes advanced anionic polymeric stabilizers to maintain a highly dispersed state that prevents particle aggregation.
Tech Data
| Molecular Formula | CAS No. | CeO₂ % | D50 (μm) | Appearance | Application |
| CeO2 | 1306-38-3 | 63~68 | 1.0±0.2 | White Slurry | LCD Panel |
Q&A
1. What is rare earth polishing powder?
Rare earth polishing powder is a high-purity compound used for polishing optical components, semiconductor wafers, and delicate surfaces like glass and lenses. It delivers a smooth, high-clarity finish without damaging the material.
2. How do I choose the right rare earth polishing powder for my application?
To select the ideal polishing powder, consider factors like the material you’re polishing, the required finish, and specifications like particle size and purity. Our sales team is available to help you choose the perfect product for your needs.
3. How should I store rare earth polishing powder?
Store in a cool, dry place, away from moisture and direct sunlight. Keep the powder in airtight containers to prevent contamination and maintain its effectiveness. With proper storage, it typically lasts 1-2 years.
4. Do you provide customized rare earth formulations?
Yes, we offer custom rare earth polishing powders and slurries, tailored to meet your specific needs, including adjustments to particle size, chemical composition, or slurry consistency.
5. Can I get a sample before making a bulk order?
Absolutely! We provide samples for evaluation. Contact our team to request a sample, and we’ll arrange the shipment.
6. How can I place an order? What is the typical delivery time?
To place an order, simply contact our sales team, who will guide you through the process and provide a quote. Delivery times vary based on order size, location, and stock availability, and we’ll give you an estimated schedule once the order is confirmed.
Product Highlights
Customized Polishing Slurry for LCD Panel Manufacturing Description Engineered for the stringent demands of display technologies, our customized cerium oxide slurries provide the high-precision finishing required for high-generation LCD and liquid crystal glass substrates. As automotive and consumer ...
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Cerium Oxalate Powder Chemical Reagent Elements
Cerium oxalate is an oxalate salt of trivalent cerium and an important rare earth compound, often existing in the form of hydrate. 1. Basic Information English Name: Cerium(III) oxalate, Cerous oxalate Chemical Formula: (usually hydrate, where x is mostly 9 or 10) Molecular Weight (Anhydrous): 544.29 : Anhydrous: 139-42-4 Hydrate: 15750-47-7 2. Physical and Chemical Properties Appearance: White or pale yellow crystalline powder, odorless and tasteless. Solubility: Practically
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