{"id":7142,"date":"2017-09-21T09:24:52","date_gmt":"2017-09-21T15:24:52","guid":{"rendered":"http:\/\/otech.uaeh.edu.mx\/noti\/?p=7142"},"modified":"2017-09-21T09:24:52","modified_gmt":"2017-09-21T15:24:52","slug":"impresion-en-nanoescala-produce-dos-colores-por-pixel","status":"publish","type":"post","link":"https:\/\/otech.uaeh.edu.mx\/noti\/tech\/impresion-en-nanoescala-produce-dos-colores-por-pixel\/","title":{"rendered":"Impresi\u00f3n en nanoescala produce dos colores por p\u00edxel"},"content":{"rendered":"<p style=\"text-align: justify;\">Cient\u00edficos han desarrollado una nueva forma de impresi\u00f3n de alta resoluci\u00f3n en nanoescala que permite codificar dos colores por p\u00edxel, con aplicaci\u00f3n en almacenamiento de datos y contra la falsficaci\u00f3n.<!--more-->Una nueva investigaci\u00f3n de la Universidad de Glasgow, publicada en la revista Advanced Functional Materials, describe c\u00f3mo los ingenieros de la Universidad de Glasgow han desarrollado filtros de color plasm\u00f3nicos de nanoescala, que muestran diferentes colores dependiendo de la orientaci\u00f3n de la luz que la golpea.<\/p>\n<p style=\"text-align: justify;\">Esencialmente, esta nueva t\u00e9cnica permite la \u201cimpresi\u00f3n\u201d de dos im\u00e1genes totalmente diferentes, pero excepcionalmente detalladas, a todo color dentro de la misma superficie, algo que nunca se ha hecho antes de usar t\u00e9cnicas de \u201ccolor estructural\u201d.<\/p>\n<p style=\"text-align: justify;\">En lugar de depender de tintes y pigmentos, como en la impresi\u00f3n tradicional, el color estructural utiliza nanomateriales especialmente estructurados para producir colores. Los nanomateriales permiten impresiones de mayor resoluci\u00f3n que no se desvanecen con el tiempo. Una imagen impresa t\u00edpica en una revista, por ejemplo, puede consistir en unos 300 puntos de color por pulgada de p\u00e1gina, o 300 DPI. Sin embargo, una p\u00e1gina \u2018impresa\u2019 con t\u00e9cnicas de color estructural podr\u00eda alcanzar una resoluci\u00f3n de 100.000 DPI o m\u00e1s.<\/p>\n<p style=\"text-align: justify;\">El descubrimiento del equipo de la Universidad de Glasgow proviene de incluir un elemento adicional a nanoescala en el proceso de color estructural, creado en el Centro de Nanofabricaci\u00f3n James Watt de la Universidad.<\/p>\n<p style=\"text-align: justify;\">Alasdair Clark, profesor de ingenier\u00eda biom\u00e9dica, es el autor principal del trabajo de investigaci\u00f3n. Clark dijo en un comunicado: \u201cHemos descubierto que si hacemos p\u00edxeles de color a partir de peque\u00f1as muescas en forma de cruz en una tira de pel\u00edcula de aluminio, el color que muestran se convierte en dependiente de la polarizaci\u00f3n, lo que nos permite codificar dos colores en un solo p\u00edxel y luego seleccionar qu\u00e9 color se visualiza haciendo brillar diferentes polarizaciones de luz en la superficie.<\/p>\n<p style=\"text-align: justify;\">\u201cAl cambiar el tama\u00f1o y la forma de la marca de nanoescala, podemos crear una amplia gama de colores diferentes en resoluciones muy altas\u201d, dijo Clark, quien a\u00f1adi\u00f3: \u201cHay muchas aplicaciones potenciales para nuestra tecnolog\u00eda de color plasm\u00f3nico, de la que estamos muy entusiasmados\u201d.<\/p>\n<p style=\"text-align: justify;\">\u201cEs ideal para el archivado de datos a largo plazo debido a su alta resoluci\u00f3n, y porque los colores no se desvanecen, incluso cuando se exponen a largo plazo a la luz solar m\u00e1s dura. Hemos calculado que pod\u00edamos almacenar 1,46 GB por cent\u00edmetro cuadrado , por lo que una sola hoja A4 podr\u00eda contener m\u00e1s de 900 Gb de datos.<\/p>\n<p style=\"text-align: justify;\">\u201cEn segundo lugar, el proceso para producir los colores plasm\u00f3nicos es dif\u00edcil de replicar sin acceso a instalaciones dedicadas, por lo que podr\u00eda ser ideal para crear un nuevo tipo de material anti-falsificaci\u00f3n de billetes de banco. Por \u00faltimo, ofrece la posibilidad de desarrollar nuevos tipos de filtros de color para la fotograf\u00eda digital\u201d.<\/p>\n<p style=\"text-align: justify;\"><strong>Fuente: <\/strong>Europa Press<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Cient\u00edficos han desarrollado una nueva forma de impresi\u00f3n de alta resoluci\u00f3n en nanoescala que permite codificar dos colores por p\u00edxel, con aplicaci\u00f3n en almacenamiento de datos y contra la falsficaci\u00f3n.<\/p>\n","protected":false},"author":1,"featured_media":7143,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[3],"tags":[],"class_list":["post-7142","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-tech"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.7 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Impresi\u00f3n en nanoescala produce dos 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