{"id":1532,"date":"2026-08-13T07:21:00","date_gmt":"2026-08-13T05:21:00","guid":{"rendered":"https:\/\/infoimasd.com\/?p=1532"},"modified":"2026-08-13T07:20:13","modified_gmt":"2026-08-13T05:20:13","slug":"nanomaterial-csic-reduce-calor-sin-electricidad","status":"publish","type":"post","link":"https:\/\/infoimasd.com\/index.php\/2026\/08\/13\/nanomaterial-csic-reduce-calor-sin-electricidad\/","title":{"rendered":"Un nanomaterial del CSIC logra enfriar superficies hasta 12,9 \u00baC bajo el sol y sin electricidad"},"content":{"rendered":"\n<p class=\"has-medium-font-size wp-block-paragraph\">Mientras las altas temperaturas del verano disparan el uso del aire acondicionado, investigadores del <a href=\"https:\/\/infoimasd.com\/index.php\/2026\/07\/16\/csic-memoria-anual-2025-publicaciones-cientificas-innovacion\/\" data-type=\"post\" data-id=\"1151\">CSIC<\/a> trabajan en una v\u00eda distinta para combatir el calor: materiales capaces de refrigerarse de forma pasiva y sin consumir electricidad. <strong>Un equipo del Instituto de Micro y Nanotecnolog\u00eda (IMN-CNM, CSIC) ha desarrollado un nanomaterial que consigui\u00f3 reducir hasta 12,9 \u00baC la temperatura de una superficie expuesta al sol. <\/strong>El resultado se obtuvo durante ensayos realizados en verano y abre una posible v\u00eda para reducir la necesidad de refrigeraci\u00f3n activa.<\/p>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">La tecnolog\u00eda se basa en un fen\u00f3meno conocido como <strong>refrigeraci\u00f3n radiativa pasiva diurna.<\/strong> El material debe evitar que la radiaci\u00f3n solar lo caliente y, al mismo tiempo, ser capaz de expulsar el calor hacia el exterior en forma de radiaci\u00f3n infrarroja. De esta manera, puede alcanzar una <a href=\"https:\/\/infoimasd.com\/index.php\/2026\/06\/24\/un-ladrillo-de-ceramica-que-baja-la-temperatura-hasta-9-grados-la-solucion-para-las-urbes-espanolas-en-verano\/\" data-type=\"post\" data-id=\"793\">temperatura inferior a la del ambiente sin necesidad de electricidad.<\/a><\/p>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">Para conseguirlo, los investigadores han dise\u00f1ado <strong>nanoestructuras tridimensionales de fluoruro de polivinilideno, conocido como PVDF.<\/strong> Se trata de un pol\u00edmero con una elevada capacidad para emitir calor en el infrarrojo. Las estructuras se fabrican utilizando moldes nanoporosos de \u00f3xido de aluminio anodizado, una t\u00e9cnica que permite controlar con precisi\u00f3n la geometr\u00eda interna del material. Esta escala es clave, ya que el comportamiento \u00f3ptico de los refrigeradores radiativos depende directamente de su dise\u00f1o.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Una ventana hacia el espacio<\/h3>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">El material aprovecha una caracter\u00edstica de la atm\u00f3sfera terrestre. Existe una regi\u00f3n del espectro infrarrojo, situada aproximadamente entre 8 y 13 micr\u00f3metros, conocida como <strong>ventana de transparencia atmosf\u00e9rica. <\/strong>En ella, la atm\u00f3sfera permite que parte de la radiaci\u00f3n t\u00e9rmica escape directamente hacia el espacio. El nanomaterial desarrollado por el <a href=\"https:\/\/infoimasd.com\/index.php\/2026\/08\/06\/csic-830000-euros-investigacion-alzheimer-legado-juana-rienda\/\" data-type=\"post\" data-id=\"1471\">CSIC<\/a> est\u00e1 dise\u00f1ado para aprovechar este fen\u00f3meno. Primero refleja buena parte de la radiaci\u00f3n solar para evitar calentarse. Despu\u00e9s emite el calor acumulado en esa ventana infrarroja. El resultado es una refrigeraci\u00f3n que no requiere aportar energ\u00eda al sistema. Es, en cierto modo, una forma de utilizar el espacio como sumidero t\u00e9rmico.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Hasta 12,9 \u00baC menos durante el verano<\/h3>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">Los investigadores probaron el material al aire libre durante el verano de 2025, en la azotea del IMN-CNM del CSIC en Tres Cantos, Madrid. En las condiciones m\u00e1s favorables, con d\u00edas c\u00e1lidos, secos y una elevada radiaci\u00f3n solar, <strong>la superficie recubierta consigui\u00f3 alcanzar una temperatura hasta 12,9 \u00baC inferior a la de una muestra de referencia sin recubrimiento.<\/strong> Para mejorar su comportamiento, el equipo someti\u00f3 las estructuras de PVDF a diferentes procesos y a un tratamiento con radiaci\u00f3n ultravioleta. Este \u00faltimo aumenta la reflectancia solar al blanquear el material. Adem\u00e1s, las nanoestructuras conservaron su flexibilidad despu\u00e9s de las pruebas exteriores y no mostraron signos de fragilizaci\u00f3n ni agrietamiento.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Del aire acondicionado a edificios que se enfr\u00edan por s\u00ed mismos<\/h3>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">El inter\u00e9s de esta tecnolog\u00eda aumenta en un contexto de veranos cada vez m\u00e1s exigentes para los sistemas de refrigeraci\u00f3n. <strong>Seg\u00fan el CSIC, el consumo energ\u00e9tico asociado actualmente a la refrigeraci\u00f3n se sit\u00faa cerca del 20% de la electricidad mundial<\/strong> y se espera que siga aumentando durante las pr\u00f3ximas d\u00e9cadas. Por eso, el objetivo no ser\u00eda sustituir de inmediato al aire acondicionado, sino reducir la cantidad de refrigeraci\u00f3n activa necesaria. Los investigadores consideran que el material podr\u00eda incorporarse en el futuro a cubiertas y fachadas de edificios. Tambi\u00e9n podr\u00eda tener aplicaciones en veh\u00edculos, dispositivos electr\u00f3nicos y sistemas de gesti\u00f3n t\u00e9rmica personal.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Una tecnolog\u00eda todav\u00eda en desarrollo<\/h3>\n\n\n\n<p class=\"has-medium-font-size wp-block-paragraph\">El <a href=\"https:\/\/infoimasd.com\/index.php\/2026\/07\/30\/csic-actividades-eclipse-total-sol-12-agosto-2026\/\" data-type=\"post\" data-id=\"1432\">CSIC<\/a> subraya que la tecnolog\u00eda se encuentra todav\u00eda en fase de desarrollo. <strong>Uno de los principales avances del trabajo es precisamente la estrategia utilizada para fabricar nanoestructuras polim\u00e9ricas tridimensionales de forma potencialmente escalable. <\/strong>Seg\u00fan el equipo, el m\u00e9todo es relativamente econ\u00f3mico y podr\u00eda adaptarse a procesos industriales. El trabajo ha sido desarrollado por el grupo Functional Nanoscale Devices for Energy (FINDER) del IMN-CNM y se enmarca en el proyecto COOLed. La investigaci\u00f3n ha sido publicada en la revista cient\u00edfica Nanophotonics bajo el t\u00edtulo <em>\u201c3D PVDF nanonetworks templated for daytime passive radiative cooling\u201d.<\/em> La propuesta apunta as\u00ed a una v\u00eda diferente para afrontar uno de los problemas asociados a los veranos cada vez m\u00e1s calurosos. En lugar de consumir m\u00e1s electricidad para expulsar el calor, dise\u00f1ar materiales capaces de <strong>reflejar la energ\u00eda solar y enviar el calor directamente hacia el espacio<\/strong>.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Un equipo del CSIC ha desarrollado un nanomaterial capaz de reducir hasta 12,9 \u00baC la temperatura de una superficie expuesta al sol mediante refrigeraci\u00f3n radiativa pasiva.<\/p>\n","protected":false},"author":1,"featured_media":1535,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_feature_clip_id":0,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_post_was_ever_published":false},"categories":[11],"tags":[],"class_list":["post-1532","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-investigacion"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.4 - 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