{"id":8869,"date":"2025-09-11T10:17:38","date_gmt":"2025-09-11T10:17:38","guid":{"rendered":"https:\/\/changhongchemical.com\/?p=8869"},"modified":"2026-04-27T11:16:01","modified_gmt":"2026-04-27T11:16:01","slug":"factors-affecting-pigment-color","status":"publish","type":"post","link":"https:\/\/changhongchemical.com\/fr\/factors-affecting-pigment-color\/","title":{"rendered":"Facteurs affectant la couleur des pigments"},"content":{"rendered":"<h1><strong>Facteurs affectant la couleur des pigments<\/strong><\/h1>\r\n<strong>\u00a0<\/strong>\r\n\r\nDe nombreux facteurs influencent la couleur des pigments, parmi lesquels la structure chimique, la forme cristalline et le traitement de surface sont des facteurs d\u00e9cisifs qui affectent \u00e0 la fois la couleur et les propri\u00e9t\u00e9s secondaires. La couleur d'un pigment est principalement d\u00e9termin\u00e9e par sa structure chimique. Toutefois, le type de forme cristalline, la forme, la taille des particules et le traitement de surface peuvent \u00e9galement modifier sa couleur. Par exemple, parmi les bleus de phtalocyanine, la forme cristalline \u03b1 pr\u00e9sente une teinte rouge, la forme cristalline \u03b2 une teinte verte, et la forme cristalline \u03b5 produit un pigment bleu de phtalocyanine avec une teinte plus rouge que la forme \u03b1. Les propri\u00e9t\u00e9s secondaires des pigments, telles que la stabilit\u00e9 cristalline, la r\u00e9sistance \u00e0 la lumi\u00e8re et aux intemp\u00e9ries, le pouvoir couvrant et la transparence, le pouvoir colorant, la brillance, la rh\u00e9ologie, la dispersibilit\u00e9, la r\u00e9sistance \u00e0 la chaleur et la r\u00e9sistance chimique, jouent un r\u00f4le de plus en plus important dans la diff\u00e9renciation et la segmentation du march\u00e9.\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>Structure chimique<\/strong>\r\n\r\n&nbsp;\r\n\r\nSur la base de leur structure chimique g\u00e9n\u00e9rale, les pigments peuvent \u00eatre class\u00e9s en pigments inorganiques, pigments organiques et pigments \u00e0 effets.\r\n\r\n<strong><b>\u00a0<\/b><\/strong>\r\n\r\n<strong>1) Pigments inorganiques :<\/strong>Class\u00e9s par structure chimique, ils comprennent le dioxyde de titane, le noir de carbone, la s\u00e9rie des oxydes de fer, la s\u00e9rie des chromates de plomb, la s\u00e9rie des oxydes de chrome et la s\u00e9rie des oxydes de cadmium, le bleu outremer, le vanadate de bismuth et les pigments inorganiques composites.\r\n\r\n<img decoding=\"async\" class=\"alignnone size-full wp-image-8870\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5.webp\" alt=\"\" width=\"3462\" height=\"1417\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-768x314.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-1536x629.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-2048x838.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-18x7.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-1280x524.webp 1280w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/1-5-600x246.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>\r\n\r\n<strong>2) Pigments organiques : <\/strong>Les pigments organiques sont class\u00e9s par structure chimique en pigments azo\u00efques, pigments polycycliques et pigments \u00e0 complexe m\u00e9tallique. Les pigments azo\u00efques sont principalement des pigments organiques traditionnels dont la couleur est peu r\u00e9sistante, bien qu'il existe des exceptions telles que le benzimidazolone. Les pigments de condensation diazo\u00efques, en revanche, appartiennent \u00e0 la cat\u00e9gorie des pigments organiques \u00e0 haute performance. Les pigments polycycliques et les complexes m\u00e9talliques sont des pigments organiques \u00e0 hautes performances qui pr\u00e9sentent d'excellentes propri\u00e9t\u00e9s de solidit\u00e9 de la couleur et de r\u00e9sistance.\r\n\r\n&nbsp;\r\n\r\n<strong>3) Pigments \u00e0 effet :<\/strong> Poudre d'aluminium, poudre de cuivre, aluminium m\u00e9tallique, mica naturel, mica synth\u00e9tique, paillettes de verre, oxychlorure de bismuth, paillettes de graphite, couleurs structurelles de polym\u00e8res et pigments color\u00e9s, entre autres.\r\n\r\n<img decoding=\"async\" class=\"alignnone size-full wp-image-8871\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5.webp\" alt=\"\" width=\"3462\" height=\"2084\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-768x462.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-1536x925.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-2048x1233.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-18x12.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-1196x720.webp 1196w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/2-5-600x361.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>\r\n\r\n<strong>Cristal et traitement de surface<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\nLa taille des particules, la distribution des tailles, la forme des cristaux, la structure des cristaux et la cristallinit\u00e9 des cristaux de pigments influencent tous la performance de la couleur et les propri\u00e9t\u00e9s secondaires. Les poudres pr\u00e9sentent des structures cristallines ou amorphes, tandis que les pigments existent toujours sous forme cristalline. Les cristaux de pigment repr\u00e9sentent les plus petites particules de pigment, constitu\u00e9es d'atomes ou de mol\u00e9cules dispos\u00e9s et assembl\u00e9s selon des sch\u00e9mas sp\u00e9cifiques. Leurs formes distinctes et leurs microstructures peuvent \u00eatre observ\u00e9es au microscope \u00e9lectronique.\r\n\r\n<img decoding=\"async\" class=\"alignnone size-full wp-image-8872\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3.webp\" alt=\"\" width=\"3462\" height=\"2084\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-768x462.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-1536x925.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-2048x1233.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-18x12.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-1196x720.webp 1196w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/3-3-600x361.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>The smallest particles present in pigment dispersions are called primary particles, with diameters ranging from approximately 0.05 to 1 \u03bcm. They exhibit various shapes such as cubes, spheres, rods, and needles.\r\n\r\n&nbsp;\r\n\r\nDue to their high surface energy, primary particles exhibit a strong tendency to spontaneously aggregate and reduce surface energy. They typically form tightly structured aggregates through random edge-to-edge or face-to-face bonding. These aggregates have larger diameters than primary particles, generally ranging from 1 to 10 \u03bcm. During filtration and drying processes in pigment manufacturing, primary particles and aggregates, or aggregates themselves, agglomerate to form larger, more loosely structured agglomerates with particle sizes exceeding 10\u03bcm.\r\n\r\n<img decoding=\"async\" class=\"alignnone size-full wp-image-8873\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3.webp\" alt=\"\" width=\"3462\" height=\"1021\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-768x226.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-1536x453.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-2048x604.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-18x5.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-1280x377.webp 1280w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/4-3-600x177.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>\r\n\r\nLes caract\u00e9ristiques des cristaux de pigments se manifestent g\u00e9n\u00e9ralement par les propri\u00e9t\u00e9s suivantes, chacune exer\u00e7ant une influence plus ou moins grande sur les performances du pigment. La taille, la forme et la distribution des particules ont des effets particuli\u00e8rement importants sur les propri\u00e9t\u00e9s des pigments.\r\n<ul>\r\n \t<li>Taille des particules G\u00e9n\u00e9ralement petites, mesur\u00e9es en microm\u00e8tres (\u03bcm).<\/li>\r\n \t<li>La distribution de la taille des particules, commun\u00e9ment mesur\u00e9e par des param\u00e8tres tels que D10, D50 et D90. Par exemple, un D50 de 20\u03bcm indique que 50% des particules de pigment ont un diam\u00e8tre moyen de 20\u03bcm.<\/li>\r\n \t<li>Forme des particules de cristal, telles que aciculaires, sph\u00e9riques, cubiques ou autres.<\/li>\r\n \t<li>Structure cristalline : Un m\u00eame pigment peut pr\u00e9senter plusieurs formes cristallines. Par exemple, le bleu de phtalocyanine a des formes \u03b1, \u03b2 et \u03b5, tandis que le dioxyde de titane existe sous forme d'anatase, de rutile et de brookite. Les diff\u00e9rentes structures cristallines permettent d'obtenir des propri\u00e9t\u00e9s colorim\u00e9triques et des caract\u00e9ristiques secondaires vari\u00e9es.<\/li>\r\n \t<li>La cristallinit\u00e9 affecte principalement la solidit\u00e9 de la couleur. L'augmentation de la cristallinit\u00e9 am\u00e9liore la r\u00e9sistance \u00e0 la lumi\u00e8re, aux intemp\u00e9ries et \u00e0 la chaleur d'un pigment, tout en am\u00e9liorant ses propri\u00e9t\u00e9s rh\u00e9ologiques, sa r\u00e9sistance aux solvants et sa r\u00e9sistance \u00e0 la d\u00e9coloration.<\/li>\r\n<\/ul>\r\n&nbsp;\r\n\r\nLe traitement de surface est un processus et une technologie essentiels dans le traitement des pigments. La fonction premi\u00e8re du traitement de surface est de modifier la polarit\u00e9 de la surface des particules, afin d'assurer une bonne compatibilit\u00e9 entre le pigment et le milieu d'application. Cela am\u00e9liore les propri\u00e9t\u00e9s d'application telles que la dispersion, la rh\u00e9ologie, la r\u00e9sistance et la stabilit\u00e9 du syst\u00e8me de dispersion. Le m\u00eame pigment peut subir diff\u00e9rents traitements de surface pour produire des types de produits pr\u00e9sentant des propri\u00e9t\u00e9s d'application sp\u00e9cifiques, telles qu'une dispersion facile, une antifloculation, un pouvoir couvrant \u00e9lev\u00e9 ou une grande transparence, ainsi qu'une aptitude aux applications \u00e0 base de solvant ou \u00e0 base d'eau.\r\n\r\n&nbsp;\r\n\r\n<strong>L'effet de la taille des particules sur les pigments<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\nLa taille des particules des pigments de structures diff\u00e9rentes varie \u00e9galement beaucoup. En g\u00e9n\u00e9ral, les pigments inorganiques ont des particules plus grosses que les pigments organiques. Parmi les pigments inorganiques, le noir de carbone a des particules tr\u00e8s petites, voire plus petites que certains pigments organiques, tandis que le dioxyde de titane et les oxydes de fer ont des particules plus grandes. La taille des particules d'oxyde de fer rouge peut atteindre des dizaines de fois celle du dioxyde de titane.\r\n\r\n<strong><img decoding=\"async\" class=\"alignnone size-full wp-image-8874\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1.webp\" alt=\"\" width=\"3462\" height=\"2084\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-768x462.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-1536x925.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-2048x1233.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-18x12.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-1196x720.webp 1196w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/5-1-600x361.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>Effet de la taille des particules sur la teinte<\/strong>\r\n\r\nLa teinte des pigments de structure chimique identique varie en fonction de la taille des particules. Pour un pigment donn\u00e9, l'angle de couleur augmente lorsque la taille des particules diminue et diminue lorsque la taille des particules augmente. Lorsque la taille des particules d'un pigment sp\u00e9cifique diminue, sa teinte se d\u00e9place dans le sens inverse des aiguilles d'une montre sur la roue chromatique. Inversement, lorsque la taille des particules augmente, la teinte se d\u00e9place vers les teintes adjacentes dans le sens inverse des aiguilles d'une montre.\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>Effet de la taille des particules sur la surface et les propri\u00e9t\u00e9s<\/strong>\r\n\r\nPlus la taille des particules de pigment est petite, plus leur surface sp\u00e9cifique est grande. Les particules plus petites pr\u00e9sentent une capacit\u00e9 d'adsorption plus forte et une viscosit\u00e9 plus \u00e9lev\u00e9e dans le milieu, ce qui n\u00e9cessite naturellement de plus grandes quantit\u00e9s de dispersants pour la dispersion et la r\u00e9duction de la viscosit\u00e9. Les diff\u00e9rentes tailles de particules d'un m\u00eame pigment pr\u00e9sentent des caract\u00e9ristiques distinctes en termes de saturation des couleurs, de rh\u00e9ologie, de transparence ou de pouvoir couvrant, de pouvoir colorant et de r\u00e9sistance aux intemp\u00e9ries.\r\n<table>\r\n<tbody>\r\n<tr>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\"><strong>Petite taille des particules<\/strong><\/p>\r\n<\/td>\r\n<td style=\"text-align: center;\" width=\"189\"><strong>Performance<\/strong><\/td>\r\n<td style=\"text-align: center;\" width=\"189\"><strong>Grande taille des particules<\/strong><\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Grande transparence<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Transparence\/Opacit\u00e9<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Couverture \u00e9lev\u00e9e<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Haut<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Intensit\u00e9 de la teinte<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Faible<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Pauvre<\/p>\r\n<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Rh\u00e9ologie<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Bon<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Pauvre<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">R\u00e9sistance aux intemp\u00e9ries<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Bon<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Haut<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Saturation des couleurs<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Faible<\/p>\r\n<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n&nbsp;\r\n\r\n<strong>L'effet de la distribution de la taille des particules sur le broyage et la dispersion<\/strong>\r\n\r\nLe broyage et la dispersion des pigments impliquent l'utilisation de forces de cisaillement pour briser les agglom\u00e9rats en agr\u00e9gats ou, id\u00e9alement, en particules primaires, ce qui am\u00e9liore les performances. Simultan\u00e9ment, les pigments dont la distribution granulom\u00e9trique est plus \u00e9troite pr\u00e9sentent une saturation de la couleur et un pouvoir colorant plus \u00e9lev\u00e9s. Le diagramme de distribution de la taille des particules ci-dessous, montrant le bleu de phtalocyanine en phase \u03b2 dans un syst\u00e8me aqueux apr\u00e8s diff\u00e9rents temps de dispersion, montre clairement que l'augmentation du temps de broyage entra\u00eene des tailles moyennes de particules progressivement plus fines et une distribution plus concentr\u00e9e, se rapprochant d'une distribution id\u00e9ale. Cependant, un broyage excessif peut parfois entra\u00eener des effets ind\u00e9sirables tels que des changements de teinte et une diminution des performances.\r\n\r\n&nbsp;\r\n\r\n<img decoding=\"async\" class=\"alignnone size-full wp-image-8875\" src=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6.webp\" alt=\"\" width=\"3462\" height=\"2084\" srcset=\"https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6.webp 3462w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-768x462.webp 768w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-1536x925.webp 1536w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-2048x1233.webp 2048w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-18x12.webp 18w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-1196x720.webp 1196w, https:\/\/changhongchemical.com\/wp-content\/uploads\/2025\/09\/6-600x361.webp 600w\" sizes=\"(max-width: 3462px) 100vw, 3462px\" \/>Outre les facteurs susmentionn\u00e9s, la forme du cristal influence \u00e9galement de mani\u00e8re significative les propri\u00e9t\u00e9s rh\u00e9ologiques des pigments. Les agr\u00e9gats form\u00e9s par les particules de pigment dont les cristaux ont la forme d'une plaque ou d'un b\u00e2tonnet pr\u00e9sentent des volumes plus importants que les agr\u00e9gats provenant de particules ayant d'autres formes de cristaux. Dans des conditions identiques, ces agr\u00e9gats poss\u00e8dent une viscosit\u00e9 plus faible et font preuve d'une dispersibilit\u00e9 relativement sup\u00e9rieure dans le milieu de dispersion.\r\n\r\n&nbsp;\n\n\n<p><strong>Related product references:<\/strong> For formulation review or sourcing comparison, see <a href=\"https:\/\/changhongchemical.com\/product\/lcsorb-360-cas-103597-45-1\/\">CHLUMIUV 360<\/a> et <a href=\"https:\/\/changhongchemical.com\/product\/lcsorb-uv-1577-cas-147315-50-2\/\">CHLUMIUV UV-1577<\/a>.<\/p>","protected":false},"excerpt":{"rendered":"<p>Numerous factors influence pigment color, among which chemical structure, crystal form, and surface treatment are decisive factors affecting both color and secondary properties. The color of a pigment is primarily determined by its chemical&#8230;<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[1],"tags":[],"class_list":["post-8869","post","type-post","status-publish","format-standard","hentry","category-uncategorized"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Factors Affecting Pigment Color<\/title>\n<meta name=\"description\" content=\"Numerous factors influence pigment color, among which chemical structure, crystal form, and surface treatment are decisive factors affecting both color and secondary properties. The color of a pigment is primarily determined by its chemical structure. However, the type of crystal form, shape, particle size, and surface treatment can also alter its color. For example, among phthalocyanine blues, the \u03b1 crystal form exhibits a red hue, the \u03b2 crystal form displays a green hue, and the \u03b5 crystal form produces a phthalocyanine blue pigment with a redder hue than the \u03b1 form. Secondary properties of pigments\u2014such as crystal stability, lightfastness and weather resistance, hiding power and transparency, tinting strength, gloss, rheology, dispersibility, heat resistance, and chemical resistance\u2014are increasingly significant in market differentiation and segmentation.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/changhongchemical.com\/fr\/factors-affecting-pigment-color\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Factors Affecting Pigment Color\" \/>\n<meta property=\"og:description\" content=\"Numerous factors influence pigment color, among which chemical structure, crystal form, and surface treatment are decisive factors affecting both color and secondary properties. The color of a pigment is primarily determined by its chemical structure. However, the type of crystal form, shape, particle size, and surface treatment can also alter its color. For example, among phthalocyanine blues, the \u03b1 crystal form exhibits a red hue, the \u03b2 crystal form displays a green hue, and the \u03b5 crystal form produces a phthalocyanine blue pigment with a redder hue than the \u03b1 form. 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