Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

OMG Borchers Gen 1252 Wetting Dispersant

OMG Borchers Gen 1252 is a high-end wetting dispersant under OMG Borchers, specially designed for water-based and solvent-based coating systems, with PEO-free, non-ionic polyurethane-based high molecular weight components as the core. It has 100% active ingredients and no VOC addition, with outstanding environmental protection, strong affinity for titanium dioxide

  • omg borchers gen 1252
  • omg borchers gen 1252

Effect of OMG Borchers Gen 1252 Wetting Dispersant

  1. Environmentally friendly without additives - 100% active ingredients, no VOC, no PEO, meeting high-end environmental protection coating standards

  2. Outstanding dispersion stability - High molecular weight structure ensures long-term stability of the dispersion system and eliminates flocculation and agglomeration

  3. Strong pigment affinity - Suitable for various inorganic pigments, especially excellent dispersion effect on iron oxides and titanium dioxide

  4. Wide system adaptability - Compatible with water-based and solvent-based coating systems, no compatibility conflicts, easy to integrate into formulas

  5. Optimized finished product performance - Improves coating color development and gloss, reduces system viscosity, and ensures smooth construction

Typical Applications of OMG Borchers Gen 1252 Wetting Dispersant

  1. Industrial protective coatings - Various industrial protective coatings, improving pigment dispersion stability and film protection

  2. Automotive coatings - Automotive original paint and refinish paint, optimizing color uniformity and film gloss texture

  3. Architectural coatings - High-end architectural interior and exterior wall coatings, suitable for inorganic pigments, ensuring long-term color stability

  4. Wood coatings - Special coatings for wood, improving color development and film flatness, enhancing adhesion performance

  5. Pigment dispersion systems - Special dispersion systems for inorganic pigments, achieving high pigment loading while maintaining system fluidity

Technical Data of OMG Borchers Gen 1252 Wetting Dispersant

BrandOMG Borchers (OMG Additives)
Chemical TypeNon-ionic polyurethane-based high molecular weight wetting dispersant
Chemical CompositionPEO-free non-ionic polyurethane-based high molecular weight compound
Appearance (20°C)Colorless liquid
Active Ingredient (Non-volatile Content)100%
IonicityNon-ionic
VOC Content0%
PEO Content0%
Specific Gravity (20°C)Approx. 1.03-1.07 g/cm³


OMG Borchers Gen 1252 Wetting Dispersant – Frequently Asked Questions (FAQ)

Q1: What types of pigments and fillers is Gen 1252 especially effective for?

A: Gen 1252 demonstrates strong wetting and dispersing performance with a broad range of inorganic pigments (e.g., titanium dioxide, iron oxides, carbon black) and functional fillers such as silica, calcium carbonate, and talc — particularly in aqueous systems where stabilization against reagglomeration is critical.


Q2: Can Gen 1252 be used in both anionic and non-ionic surfactant-containing formulations?

A: Yes, Gen 1252 is compatible with common anionic and non-ionic surfactants found in architectural coatings, industrial paints, and ink systems. Its molecular design minimizes interference with primary surfactant functionality while enhancing overall dispersion stability.


Q3: How does Gen 1252 contribute to gloss and color strength in finished coatings?

A: By promoting uniform pigment distribution and reducing particle size during milling, Gen 1252 helps maximize light scattering efficiency and surface smoothness — resulting in improved color development, higher gloss retention, and reduced haze in clear and pigmented films.


Q4: Is Gen 1252 suitable for low-VOC or zero-VOC waterborne formulations?

A: Yes, Gen 1252 is formulated without volatile organic solvents and contains no APEOs or alkylphenol ethoxylates, making it well-suited for modern low-VOC and zero-VOC aqueous coating systems that prioritize environmental compliance and formulation safety.



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