
Making Cobalt Violet — The First True Violet Pigment in the Painter's Palette
Cobalt Violet (cobalt(II) phosphate, Co₃(PO₄)₂) was the first truly permanent violet pigment available to painters. Introduced around 1859 by Salvetat at the Sèvres porcelain factory, it filled a gap that had existed since antiquity — every earlier violet was either a fugitive organic dye (orchil, logwood) or an unstable mixture of red and blue pigments that shifted colour over time.
The chemistry is a wet precipitation: when a soluble cobalt salt (cobalt chloride) meets a soluble phosphate (trisodium phosphate) in solution, insoluble cobalt(II) phosphate precipitates immediately as a vivid violet powder. The raw precipitate is then calcined at 800°C to drive off water and crystallise the anhydrous form, which is the true pigment — deeper in colour, more opaque, and more permanent than the hydrated precipitate.
Cobalt violet is completely lightfast, chemically stable, and compatible with all painting media. Its main drawbacks are low tinting strength and very high cost — it requires both expensive cobalt and a multi-step synthesis. Despite this, it was valued by Impressionist painters including Monet and Renoir for passages of shadow and reflected light where no blue-red mixture could achieve the correct optical effect.
SAFETY WARNING: Cobalt chloride is toxic — harmful if swallowed, inhaled, or absorbed through skin. It is classified as a suspected carcinogen. Wear nitrile gloves, safety goggles, and a dust mask when handling dry cobalt chloride. Work in a well-ventilated area. The finished pigment (cobalt phosphate) is less toxic but should still be handled with care.
Contenu dangereux
Ce blueprint contient des procédures dangereuses. Connectez-vous et activez le contenu dangereux dans les paramètres de votre compte pour voir les instructions étape par étape.
Blueprints liés
Ces blueprints partagent des connaissances — techniques, matériaux ou principes

Making Cobalt Green (Rinmann's Green) — The Cobalt Zinc Oxide Pigment of Swedish Chemistry
par Charlie
ART

Making Smalt — Grinding Cobalt Blue Glass into the Renaissance Painter's Blue Pigment
par Charlie
ART

Making Han Purple — Ancient China's Synthetic Barium Copper Silicate Pigment
par Charlie
ART

Extracting Tyrian Purple from Murex Snails — The Most Precious Colour of Antiquity
par Charlie
ART

Making Ultramarine from Lapis Lazuli — Extracting the Most Precious Pigment in History
par Charlie
ART

Perkin's Mauveine — The First Synthetic Aniline Dye from Coal Tar
par Tex
Textile et Cuir
CC0 Domaine public
Ce blueprint est publié sous CC0. Vous êtes libre de copier, modifier, distribuer et utiliser ce travail pour tout usage, sans demander la permission.
Soutenez le Maker en achetant des produits via son Blueprint où il perçoit une Commission Maker définie par les Vendeurs, ou créez une nouvelle itération de ce Blueprint et incluez-le comme connexion dans votre propre Blueprint pour partager les revenus.