A high-intensity neon pigment built for bulk decorative production runs
This yellow fluorescent glitter, glowing brightly under both daylight and UV light, belongs to the Fluorescent glitters section, which brings together high-brightness pigments intended for industrial and studio-scale manufacturing. The 1 kg packaging is designed for businesses working with large batches of decorative cosmetics, craft supplies, candle and soap production, as well as epoxy resin manufacturers, where consistent supply and batch-to-batch stability matter as much as visual impact.
Global demand for fluorescent neon glitters is driven by several distinct industries at once. In the epoxy resin craft market, yellow neon glitter is widely used for jewelry casting, resin clocks, wall art, tabletops, and custom pieces that glow vividly under blacklight. In the nail and body art industry, this type of glitter is a staple for festival makeup, nail design, face and body painting, and glow-in-the-dark cosmetic gels. Candle and soap makers use it as a decorative inclusion that stays visible as distinct sparkling particles rather than dissolving into the base, creating a shimmering effect on the surface or cross-section of the finished product. It also finds application in printing, packaging design, textile decoration, and decorative household chemical products.
The glitter particles tolerate reasonable heat exposure, which allows them to be blended into melted wax at around 60-70 degrees Celsius or into a soap base once it has cooled slightly and thickened enough to keep the particles suspended instead of sinking to the bottom of the mold. In cosmetic emulsions and gels, the glitter is typically added at the final stage, once the base has cooled to 35-40 degrees, then mixed thoroughly until evenly distributed. A recommended dosage generally falls between 0.5 and 3 percent of the total product weight depending on the desired sparkle density, though it is always best to confirm the exact amount with a small test batch, since the visual intensity varies considerably.
When formulating shimmering body creams, lotions, or gels, this glitter pairs well with emulsifiers that stabilize the oil-water system and keep particles suspended without separation. Formulators often turn to Emulpharma 1000 1 kg for a lightweight, non-greasy emulsion texture, or MONTANOV 202 1 kg for a denser, more stable consistency suited to decorative gels and balms. To improve skin feel and glide in glitter-infused formulas, many recipes also include Natura Tec Plantsoft L, 1 kg, which softens the finish and reduces any dryness after absorption.
This glitter is compatible with most oil and water-based systems, wax, glycerin, polymer gels, and clear resins. Since it does not dissolve and remains as discrete particles, continuous stirring is essential until the formula sets or thickens, preventing uneven distribution. Store the pigment in a dry place at room temperature, in a tightly sealed container away from direct sunlight and moisture, as exposure to water can cause clumping and loss of free-flowing texture.
For 1 kg batches, the economic advantage becomes clear in ongoing production, since bulk packaging lowers the cost per unit and reduces downtime caused by running out of raw material mid-run. This makes the glitter a practical choice for workshops maintaining a steady lineup of neon decorative products.
UV-reactive epoxy resin coaster
Clear epoxy resin 400 g
Hardener 200 g
Fluorescent glitter neon yellow 25 g
Mica powder white 5 g
Silicone mold 1 pc
Measure the epoxy resin and hardener according to the recommended ratio and mix them slowly for at least three minutes until fully combined and free of streaks. Divide the mixture into two portions, tint one lightly with white mica powder, and stir the fluorescent glitter into the other portion until evenly dispersed. Pour the tinted layer into the silicone mold first, let it partially set for about twenty minutes, then pour the glitter layer on top, gently swirling with a toothpick for a marbled effect. Leave the coaster to cure at room temperature for twenty-four hours away from dust before demolding.