{"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\/it\/factors-affecting-pigment-color\/","title":{"rendered":"Fattori che influenzano il colore dei pigmenti"},"content":{"rendered":"<h1><strong>Fattori che influenzano il colore dei pigmenti<\/strong><\/h1>\r\n<strong>\u00a0<\/strong>\r\n\r\nNumerosi fattori influenzano il colore dei pigmenti, tra cui la struttura chimica, la forma cristallina e il trattamento superficiale sono fattori decisivi che influenzano sia il colore che le propriet\u00e0 secondarie. Il colore di un pigmento \u00e8 determinato principalmente dalla sua struttura chimica. Tuttavia, anche il tipo di forma cristallina, la forma, la dimensione delle particelle e il trattamento superficiale possono alterare il colore. Ad esempio, tra i blu di ftalocianina, la forma cristallina \u03b1 presenta una tonalit\u00e0 rossa, la forma cristallina \u03b2 una tonalit\u00e0 verde e la forma cristallina \u03b5 produce un pigmento blu di ftalocianina con una tonalit\u00e0 pi\u00f9 rossa rispetto alla forma \u03b1. Le propriet\u00e0 secondarie dei pigmenti, come la stabilit\u00e0 dei cristalli, la resistenza alla luce e agli agenti atmosferici, il potere coprente e la trasparenza, la forza colorante, la brillantezza, la reologia, la disperdibilit\u00e0, la resistenza al calore e la resistenza chimica, sono sempre pi\u00f9 importanti per la differenziazione e la segmentazione del mercato.\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>Struttura chimica<\/strong>\r\n\r\n&nbsp;\r\n\r\nIn base alla struttura chimica generale, i pigmenti possono essere classificati in pigmenti inorganici, pigmenti organici e pigmenti ad effetto.\r\n\r\n<strong><b>\u00a0<\/b><\/strong>\r\n\r\n<strong>1) Pigmenti inorganici:<\/strong>Classificati in base alla struttura chimica, comprendono il biossido di titanio, il nero di carbonio, la serie di ossidi di ferro, la serie di cromati di piombo, la serie di ossidi di cromo e cadmio, il blu oltremare, il vanadato di bismuto e i pigmenti inorganici compositi.\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) Pigmenti organici: <\/strong>I pigmenti organici sono ampiamente classificati in base alla struttura chimica in pigmenti azoici, pigmenti policiclici e pigmenti complessi metallici. I pigmenti azoici sono prevalentemente pigmenti organici tradizionali con scarsa resistenza del colore, anche se esistono eccezioni come il benzimidazolone. I pigmenti a condensazione dizoica, invece, appartengono alla categoria dei pigmenti organici ad alte prestazioni. I pigmenti policiclici e a complessi metallici rappresentano pigmenti organici ad alte prestazioni con eccellenti propriet\u00e0 di resistenza e solidit\u00e0 del colore.\r\n\r\n&nbsp;\r\n\r\n<strong>3) Pigmenti a effetto:<\/strong> Polvere di alluminio, polvere di rame, alluminio metallico, mica naturale, mica sintetica, scaglie di vetro, ossicloruro di bismuto, scaglie di grafite, colori strutturali polimerici e pigmenti che cambiano colore.\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>Cristallo e trattamento della superficie<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\nLe dimensioni delle particelle, la distribuzione dimensionale, la forma dei cristalli, la struttura cristallina e la cristallinit\u00e0 dei cristalli di pigmento influenzano le prestazioni cromatiche e le propriet\u00e0 secondarie. Le polveri presentano strutture cristalline o amorfe, mentre i pigmenti esistono sempre in forma cristallina. I cristalli di pigmento rappresentano le particelle pi\u00f9 piccole di pigmento, costituite da atomi o molecole disposte e assemblate in schemi specifici. Le loro forme e microstrutture distinte possono essere osservate con la microscopia elettronica.\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\nLe caratteristiche dei cristalli dei pigmenti si manifestano tipicamente attraverso le seguenti propriet\u00e0, ognuna delle quali esercita diversi gradi di influenza sulle prestazioni dei pigmenti. La dimensione, la forma e la distribuzione delle particelle esercitano effetti particolarmente significativi sulle propriet\u00e0 dei pigmenti.\r\n<ul>\r\n \t<li>Dimensione delle particelle Generalmente piccole, misurate in micrometri (\u03bcm).<\/li>\r\n \t<li>Distribuzione dimensionale delle particelle, comunemente misurata con parametri quali D10, D50 e D90. Ad esempio, un D50 di 20\u03bcm indica che 50% delle particelle di pigmento hanno un diametro medio di 20\u03bcm.<\/li>\r\n \t<li>Forma delle particelle di cristallo, come ad esempio aciculare, sferica, cubica o altre forme.<\/li>\r\n \t<li>Struttura cristallina: Un singolo pigmento pu\u00f2 presentare pi\u00f9 forme cristalline. Ad esempio, il blu ftalocianina ha forme \u03b1, \u03b2 ed \u03b5, mentre il biossido di titanio esiste come anatasio, rutilo e brookite. Le diverse strutture cristalline danno luogo a propriet\u00e0 cromatiche e caratteristiche secondarie diverse.<\/li>\r\n \t<li>La cristallinit\u00e0 influisce principalmente sulla solidit\u00e0 del colore. L'aumento della cristallinit\u00e0 aumenta la resistenza alla luce, agli agenti atmosferici e al calore di un pigmento, migliorandone al contempo le propriet\u00e0 reologiche, la resistenza ai solventi e la resistenza al viraggio del colore.<\/li>\r\n<\/ul>\r\n&nbsp;\r\n\r\nIl trattamento superficiale \u00e8 un processo e una tecnologia cruciale nella lavorazione dei pigmenti. La funzione principale del trattamento superficiale \u00e8 quella di alterare la polarit\u00e0 della superficie delle particelle, garantendo una buona compatibilit\u00e0 tra il pigmento e il mezzo di applicazione. Questo migliora le propriet\u00e0 applicative come la dispersione, la reologia, la resistenza e la stabilit\u00e0 del sistema di dispersione. Lo stesso pigmento pu\u00f2 essere sottoposto a diversi trattamenti superficiali per ottenere tipi di prodotti con propriet\u00e0 applicative specifiche, come la facilit\u00e0 di dispersione, l'antiflocculazione, l'elevato potere coprente o l'alta trasparenza, nonch\u00e9 l'idoneit\u00e0 per applicazioni a base di solventi o di acqua.\r\n\r\n&nbsp;\r\n\r\n<strong>L'effetto della dimensione delle particelle sui pigmenti<\/strong>\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\nAnche le dimensioni delle particelle dei pigmenti con strutture diverse variano notevolmente. In generale, i pigmenti inorganici hanno dimensioni maggiori rispetto a quelli organici. Tra i pigmenti inorganici, il nerofumo ha particelle di dimensioni molto piccole, persino inferiori a quelle di alcuni pigmenti organici, mentre il biossido di titanio e gli ossidi di ferro hanno particelle di dimensioni maggiori. Le dimensioni delle particelle dell'ossido di ferro rosso possono raggiungere decine di volte quelle del biossido di titanio.\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\" \/>Effetto della dimensione delle particelle sulla tonalit\u00e0<\/strong>\r\n\r\nLa tonalit\u00e0 di pigmenti con strutture chimiche identiche varia con la dimensione delle particelle. Per un dato pigmento, l'angolo di colore aumenta al diminuire delle dimensioni delle particelle e diminuisce all'aumentare delle stesse. Quando la dimensione delle particelle di uno specifico pigmento diminuisce, la sua tinta si sposta in senso antiorario sulla ruota dei colori. Al contrario, quando le dimensioni delle particelle aumentano, la tinta si sposta verso le tinte adiacenti in senso antiorario.\r\n\r\n<strong>\u00a0<\/strong>\r\n\r\n<strong>Effetto della dimensione delle particelle sull'area superficiale e le propriet\u00e0<\/strong>\r\n\r\nPi\u00f9 piccole sono le dimensioni delle particelle di pigmento, maggiore \u00e8 la loro area superficiale specifica. Le particelle pi\u00f9 piccole presentano una maggiore capacit\u00e0 di adsorbimento e una maggiore viscosit\u00e0 nel mezzo, richiedendo naturalmente maggiori quantit\u00e0 di disperdenti per la dispersione e la riduzione della viscosit\u00e0. Le diverse dimensioni delle particelle dello stesso pigmento presentano caratteristiche diverse in termini di saturazione del colore, reologia, trasparenza o potere coprente, forza colorante e resistenza agli agenti atmosferici.\r\n<table>\r\n<tbody>\r\n<tr>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\"><strong>Particelle di piccole dimensioni<\/strong><\/p>\r\n<\/td>\r\n<td style=\"text-align: center;\" width=\"189\"><strong>Prestazioni<\/strong><\/td>\r\n<td style=\"text-align: center;\" width=\"189\"><strong>Grande dimensione delle particelle<\/strong><\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Elevata trasparenza<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Trasparenza\/Opacit\u00e0<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Copertura elevata<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Alto<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Forza tintometrica<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Basso<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Povero<\/p>\r\n<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Reologia<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Buono<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Povero<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Resistenza agli agenti atmosferici<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Buono<\/p>\r\n<\/td>\r\n<\/tr>\r\n<tr>\r\n<td style=\"text-align: center;\" width=\"189\">Alto<\/td>\r\n<td style=\"text-align: center;\" width=\"189\">Saturazione del colore<\/td>\r\n<td width=\"189\">\r\n<p style=\"text-align: center;\">Basso<\/p>\r\n<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n&nbsp;\r\n\r\n<strong>L'effetto della distribuzione dimensionale delle particelle sulla macinazione e sulla dispersione<\/strong>\r\n\r\nLa macinazione e la dispersione dei pigmenti comportano l'uso di forze di taglio per rompere gli agglomerati in aggregati, o idealmente in particelle primarie, migliorando cos\u00ec le prestazioni. Contemporaneamente, i pigmenti con distribuzioni granulometriche pi\u00f9 strette presentano una maggiore saturazione del colore e una maggiore forza colorante. Il diagramma della distribuzione granulometrica riportato di seguito, che mostra il blu di ftalocianina in fase \u03b2 in un sistema acquoso dopo vari tempi di dispersione, dimostra chiaramente che l'aumento del tempo di macinazione porta a dimensioni medie delle particelle progressivamente pi\u00f9 fini e a una distribuzione pi\u00f9 concentrata, avvicinandosi a una distribuzione ideale. Tuttavia, una macinazione eccessiva pu\u00f2 talvolta portare a effetti indesiderati, come variazioni di tonalit\u00e0 e diminuzione delle prestazioni.\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\" \/>Oltre a questi fattori, anche la forma del cristallo influenza in modo significativo le propriet\u00e0 reologiche dei pigmenti. Gli aggregati formati da particelle di pigmento con cristalli a forma di piastra o di bastoncino presentano volumi maggiori rispetto agli aggregati di particelle con altre forme cristalline. In condizioni identiche, questi aggregati possiedono una viscosit\u00e0 inferiore e dimostrano una dispersibilit\u00e0 relativamente superiore all'interno del mezzo di dispersione.\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> e <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\/it\/factors-affecting-pigment-color\/\" \/>\n<meta property=\"og:locale\" content=\"it_IT\" \/>\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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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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Il colore di un pigmento \u00e8 determinato principalmente dalla sua struttura chimica. Tuttavia, anche il tipo di forma cristallina, la forma, la dimensione delle particelle e il trattamento superficiale possono alterare il colore. Ad esempio, tra i blu di ftalocianina, la forma cristallina \u03b1 presenta una tonalit\u00e0 rossa, la forma cristallina \u03b2 una tonalit\u00e0 verde e la forma cristallina \u03b5 produce un pigmento blu di ftalocianina con una tonalit\u00e0 pi\u00f9 rossa rispetto alla forma \u03b1. Le propriet\u00e0 secondarie dei pigmenti, come la stabilit\u00e0 dei cristalli, la resistenza alla luce e agli agenti atmosferici, il potere coprente e la trasparenza, la forza colorante, la brillantezza, la reologia, la disperdibilit\u00e0, la resistenza al calore e la resistenza chimica, sono sempre pi\u00f9 importanti per la differenziazione e la segmentazione del mercato.","robots":{"index":"index","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"canonical":"https:\/\/changhongchemical.com\/it\/factors-affecting-pigment-color\/","og_locale":"it_IT","og_type":"article","og_title":"Factors Affecting Pigment Color","og_description":"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. 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Il colore di un pigmento \u00e8 determinato principalmente dalla sua struttura chimica. Tuttavia, anche il tipo di forma cristallina, la forma, la dimensione delle particelle e il trattamento superficiale possono alterare il colore. Ad esempio, tra i blu di ftalocianina, la forma cristallina \u03b1 presenta una tonalit\u00e0 rossa, la forma cristallina \u03b2 una tonalit\u00e0 verde e la forma cristallina \u03b5 produce un pigmento blu di ftalocianina con una tonalit\u00e0 pi\u00f9 rossa rispetto alla forma \u03b1. 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