{"id":9384,"date":"2025-12-09T09:35:02","date_gmt":"2025-12-09T09:35:02","guid":{"rendered":"https:\/\/changhongchemical.com\/?p=9384"},"modified":"2026-04-27T11:12:53","modified_gmt":"2026-04-27T11:12:53","slug":"chluminit-184-and-chluminit-tmo-difference-in-gel-nail-polish","status":"publish","type":"post","link":"https:\/\/changhongchemical.com\/de\/chluminit-184-and-chluminit-tmo-difference-in-gel-nail-polish\/","title":{"rendered":"Was ist der Unterschied zwischen dem Fotoinitiator 184 (CAS 947-19-3) und dem Fotoinitiator TMO (CAS 270586-78-2, nicht TPO) in Gel-Nagellack?"},"content":{"rendered":"<h1><strong>Was ist der Unterschied zwischen dem Fotoinitiator 184 (CAS 947-19-3) und dem Fotoinitiator TMO (CAS 270586-78-2, nicht TPO) in Gel-Nagellack?<\/strong><\/h1>\n<p>&nbsp;<\/p>\n<table style=\"border-collapse: collapse; width: 621.77pt;\" border=\"0\" width=\"829\" cellspacing=\"0\" cellpadding=\"0\">\n<tbody>\n<tr style=\"height: 16.50pt;\">\n<td class=\"et2\" style=\"height: 16.50pt; width: 194.25pt;\" width=\"259\" height=\"22\">Merkmal Abmessungen<\/td>\n<td class=\"et2\" style=\"width: 198.00pt;\" width=\"264\"><a href=\"https:\/\/changhongchemical.com\/product\/photoinitiator-184-cas-947-19-3\/\"><span style=\"color: #00ccff;\">CHLUMINIT\u00ae 184 (CAS 947-19-3)<\/span><\/a><\/td>\n<td class=\"et2\" style=\"width: 229.50pt;\" width=\"306\"><a href=\"https:\/\/changhongchemical.com\/product\/chluminit-tmo-photoinitiator-cas-270586-78-2\/\"><span style=\"color: #00ccff;\">CHLUMINIT\u00ae TMO (CAS 270586-78-2)<\/span><\/a><\/td>\n<\/tr>\n<tr style=\"height: 33.00pt;\">\n<td class=\"et3\" style=\"height: 33.00pt; width: 194.25pt;\" width=\"259\" height=\"44\">Chemischer Typ<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">\u03b1-Hydroxyketon<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Acetyl-Oxyphosphin (Methyl-Oxy-substituiert)<\/td>\n<\/tr>\n<tr style=\"height: 99.00pt;\">\n<td class=\"et3\" style=\"height: 99.00pt; width: 194.25pt;\" width=\"259\" height=\"132\">Absorptions-Wellenl\u00e4ngenprofil<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">Kurzwelliger Absorptionstyp. Prim\u00e4re Spitzenwerte bei ~245nm und ~280nm, mit schwacher Absorption von LED-Licht \u00fcber 365nm.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Langwelliger, hocheffizienter Absorber. Die Spitzenabsorption liegt typischerweise im Bereich von 380-400nm und bietet eine au\u00dfergew\u00f6hnliche Kompatibilit\u00e4t mit modernen LED-Nagellampen (365-405nm) und eine h\u00f6here Absorptionsintensit\u00e4t als TPO.<\/td>\n<\/tr>\n<tr style=\"height: 82.50pt;\">\n<td class=\"et3\" style=\"height: 82.50pt; width: 194.25pt;\" width=\"259\" height=\"110\">F\u00e4higkeit zur Kernh\u00e4rtung<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">Spezialist f\u00fcr die Aush\u00e4rtung von Oberfl\u00e4chen und flachen Schichten. Schnelle Oberfl\u00e4chenh\u00e4rtung unter geeigneten Lichtquellen.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Spezialist f\u00fcr Tiefen-\/Durchdringungsh\u00e4rtung. Seine starke Absorption von langwelligem Licht erm\u00f6glicht die Durchdringung von hochpigmentierten Farbgelen und dickeren Schichten, wodurch eine gr\u00fcndliche Aush\u00e4rtung der darunter liegenden Schichten erreicht wird.<\/td>\n<\/tr>\n<tr style=\"height: 82.50pt;\">\n<td class=\"et3\" style=\"height: 82.50pt; width: 194.25pt;\" width=\"259\" height=\"110\">Vergilbende Eigenschaften<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">\u00c4u\u00dferst geringe Vergilbung. Unverzichtbarer Initiator f\u00fcr die Herstellung farbloser, transparenter, heller und wei\u00dfer Gelpolituren zur Gew\u00e4hrleistung einer reinen Farbe.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Erhebliche Vergilbung. Seine Photolyseprodukte verursachen eine deutliche Vergilbung im System, so dass es f\u00fcr wei\u00dfe, helle Hautt\u00f6ne, transparente oder andere Produkte, die eine hohe Farbreinheit erfordern, absolut ungeeignet ist.<\/td>\n<\/tr>\n<tr style=\"height: 82.50pt;\">\n<td class=\"et3\" style=\"height: 82.50pt; width: 194.25pt;\" width=\"259\" height=\"110\">Kompatibilit\u00e4t der Lichtquellen<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">Erfordert Lichtquellen mit ausreichend kurzwelligem UV. Schlechte Kompatibilit\u00e4t mit bestimmten LEDs mit engem Spektrum, die zu unvollst\u00e4ndiger Aush\u00e4rtung neigen.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Nahezu perfekt auf moderne LED-Nagellampen abgestimmt, die eine au\u00dfergew\u00f6hnliche Aush\u00e4rtungseffizienz bieten. Dient als Hauptinitiator in \"LED-h\u00e4rtbaren Formulierungen\".<\/td>\n<\/tr>\n<tr style=\"height: 49.50pt;\">\n<td class=\"et3\" style=\"height: 49.50pt; width: 194.25pt;\" width=\"259\" height=\"66\">Funktion in der Formulierung<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">Sorgt f\u00fcr eine schnelle Aush\u00e4rtung der Oberfl\u00e4che und verhindert das Vergilben der Farbe.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">Bietet eine leistungsstarke, tief eindringende Aush\u00e4rtungsf\u00e4higkeit und l\u00f6st die Aush\u00e4rtungsprobleme bei farbigen Gelen und dicken Schichten.<\/td>\n<\/tr>\n<tr style=\"height: 66.00pt;\">\n<td class=\"et3\" style=\"height: 66.00pt; width: 194.25pt;\" width=\"259\" height=\"88\">Stabilit\u00e4t der Lagerung<\/td>\n<td class=\"et3\" style=\"width: 198.00pt;\" width=\"264\">Relativ stabil unter Innenlicht; ausgezeichnete thermische Stabilit\u00e4t.<\/td>\n<td class=\"et3\" style=\"width: 229.50pt;\" width=\"306\">\u00c4u\u00dferst empfindlich gegen\u00fcber sichtbarem Licht. Muss streng vor Licht gesch\u00fctzt gelagert werden (dunkle\/bernsteinfarbene Flaschen verwenden), um eine schnelle Zersetzung und einen Abbau zu verhindern.<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<p>Spezifische Auswirkungen auf Gel-Polish-Formulierungen und Auswahlstrategien<br \/>\nAuswirkung auf die H\u00e4rtungseffektivit\u00e4t<\/p>\n<p>Nur TMO verwenden: Kann zu einer unvollst\u00e4ndigen Aush\u00e4rtung von dunklen, stark deckenden Farbgelen (z. B. schwarz, rot, k\u00f6nigsblau) f\u00fchren, was sich durch Klebrigkeit, Faltenbildung auf der Oberfl\u00e4che, schlechte Haltbarkeit und leichtes Abl\u00f6sen \u00e4u\u00dfert. Allerdings h\u00e4rtet es transparente und helle Gele gut aus, ohne zu verf\u00e4rben.<\/p>\n<p>Nur TMO verwenden: Gew\u00e4hrleistet die vollst\u00e4ndige Aush\u00e4rtung aller Farben (einschlie\u00dflich dunkler Farbt\u00f6ne) und dicker Schichten (UV-Gelpolitur). Allerdings f\u00fchrt es bei hellen Lacken zu starker Vergilbung (Wei\u00df wird beige, Nude-Rosa wird schmutzig-orange) und verk\u00fcrzt die Haltbarkeit der Formulierung, so dass eine strikte lichtundurchl\u00e4ssige Verpackung erforderlich ist.<\/p>\n<p>Bew\u00e4hrte Praxis: Gemischte Nutzung<br \/>\nIn professionellen Gelpoliermitteln ist die Mischung von 184 mit TMO (oder TPO) der Standardansatz, um Leistung und \u00c4sthetik in Einklang zu bringen:<\/p>\n<p>Die Rolle von 184: Sorgt f\u00fcr eine schnelle Oberfl\u00e4cheninitiierung und ist vergilbungsbest\u00e4ndig.<\/p>\n<p>Die Rolle von TMO: Erm\u00f6glicht ein tiefes Eindringen f\u00fcr eine vollst\u00e4ndige Aush\u00e4rtung.<\/p>\n<p>Mischungsverh\u00e4ltnisse:<\/p>\n<p>Klare Gele, Decklacke, helle\/wei\u00dfe Gele: Hoher Anteil von 184 (z. B. &gt;90%), mit minimalem Zusatz von TMO (&lt;10%) zur Unterst\u00fctzung der Aush\u00e4rtung. Strenge Vergilbungspr\u00fcfung erforderlich.<\/p>\n<p>Dunkle\/vollfarbige Gele: Verringern Sie das Verh\u00e4ltnis 184 und erh\u00f6hen Sie das Verh\u00e4ltnis TMO deutlich (z. B. 30% : 70%). Die Vergilbung wird durch dunkle Pigmente \u00fcberdeckt; eine gr\u00fcndliche Aush\u00e4rtung ist die wichtigste Voraussetzung.<\/p>\n<p>Universelle Farbgels: Verwenden Sie ein ausgewogenes Verh\u00e4ltnis (z. B. 50% : 50%) und passen Sie es anhand der tats\u00e4chlichen Tests an.<\/p>\n<p>Schlussfolgerung und direkte Empfehlungen<br \/>\nSie sind keine Substitute, sondern erg\u00e4nzen sich. Die TMO kann 184 nicht einfach vollst\u00e4ndig ersetzen und umgekehrt.<\/p>\n<p>Kriterien f\u00fcr die Auswahl:<\/p>\n<p>Wenn Ihr Ziel darin besteht, nicht vergilbende klare Gele oder ultrareine wei\u00dfe Gele zu formulieren, ist 184 Ihr Hauptinitiator.<\/p>\n<p>Wenn Ihr Ziel darin besteht, die Aush\u00e4rtung von tiefroten, schwarzen Gelen oder dicken 3D-Schichten unter LED-Licht mit 100% zu gew\u00e4hrleisten, ist TMO Ihr Hauptinitiator.<\/p>\n<p>F\u00fcr die gro\u00dfe Mehrheit der farbigen Nagelgele m\u00fcssen beide in Kombination verwendet werden. Durch Anpassung des Verh\u00e4ltnisses finden Sie die optimale Balance zwischen \"Farberhaltung\" und \"Aush\u00e4rtungssicherheit\".<\/p>\n<p>Besonderer Hinweis: Bei der Verwendung von TMO m\u00fcssen Herstellung, Lagerung und Verpackung w\u00e4hrend des gesamten Prozesses streng lichtgesch\u00fctzt sein. Andernfalls wird das Produkt vorzeitig abgebaut und in der Flasche unwirksam.<\/p>\n<p>Kurz gesagt, 184 sichert das \"Aussehen\" und die Farbechtheit des Gelpoliers, w\u00e4hrend TMO seine \"inneren Qualit\u00e4ten\" - vollst\u00e4ndige Aush\u00e4rtung und Haltbarkeit - sicherstellt. F\u00fcr eine erfolgreiche Formel m\u00fcssen beide zusammenwirken.<\/p>","protected":false},"excerpt":{"rendered":"<p>Characteristic Dimensions CHLUMINIT\u00ae 184 (CAS 947-19-3) CHLUMINIT\u00ae TMO (CAS 270586-78-2) Chemical Type \u03b1-Hydroxyketone Acetyl Oxyphosphine (Methyl Oxy Substituted) Absorption Wavelength Profile Short-wave absorption type. Primary peaks at ~245nm and ~280nm, with weak absorption of&#8230;<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[198],"tags":[],"class_list":["post-9384","post","type-post","status-publish","format-standard","hentry","category-gel-polish"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>What is the difference between photoinitiator 184 (CAS 947-19-3) and photoinitiator TMO (CAS 270586-78-2, non-TPO) in gel nail polish? - Changhong Chemical<\/title>\n<meta name=\"description\" content=\"Detailed Analysis of the Scientific Selection and Synergistic Effects of Photoinitiator 184 (Low Yellowing) and TPO\/TMO (Deep Curing) in Formulations. 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