{"id":7584,"date":"2023-11-09T10:06:39","date_gmt":"2023-11-09T10:06:39","guid":{"rendered":"https:\/\/energia.imdea.org\/?post_type=portfolio&#038;p=7584"},"modified":"2023-11-09T10:10:37","modified_gmt":"2023-11-09T10:10:37","slug":"focosolar-functional-organic-polymer-as-photoelectrodes-for-co2-reduction-under-solar-illumination","status":"publish","type":"portfolio","link":"http:\/\/energia.imdea.org\/en\/porfolio\/focosolar-functional-organic-polymer-as-photoelectrodes-for-co2-reduction-under-solar-illumination\/","title":{"rendered":"focoSOLAR: Functional Organic Polymer as photoelectrodes for CO2 reduction under solar illumination"},"content":{"rendered":"<div  class=\"tatsu-h1nk50vmjl1adzcd tatsu-section  tatsu-bg-overlay   tatsu-clearfix\" data-title=\"\"  data-headerscheme=\"background--dark\"><div class='tatsu-section-pad clearfix' data-padding='{\"d\":\"0px 0px 0px 0px\"}' data-padding-top='0px'><div class=\"tatsu-row-wrap  tatsu-wrap tatsu-row-one-col tatsu-row-has-one-cols tatsu-medium-gutter tatsu-reg-cols  tatsu-clearfix tatsu-h1nk50vmmwfvn0yp\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-h1nk50vmr2bjj5cs\"  data-parallax-speed=\"0\" style=\"\"><div class=\"tatsu-column-inner \" ><div class=\"tatsu-column-pad-wrap\"><div class=\"tatsu-column-pad\" ><div  class=\"tatsu-module tatsu-text-block-wrap tatsu-h1nk50vmtyby6faw  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-h1nk50vmtyby6faw.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}.tatsu-h1nk50vmtyby6faw.tatsu-text-block-wrap{margin: 200px 0px 0px 0px;}<\/style>\n<h4><span style=\"font-size: 28pt; color: #ffffff;\"><strong>focoSOLAR: Functional Organic Polymer as photoelectrodes for CO2 reduction under solar illumination<\/strong><\/span><\/h4>\n<\/div><\/div><\/div><\/div><div class = \"tatsu-column-bg-image-wrap\"><div class = \"tatsu-column-bg-image\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-column-overlay tatsu-animate-none\" ><\/div><\/div><style>.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}.tatsu-h1nk50vmr2bjj5cs.tatsu-column > .tatsu-column-inner > .tatsu-column-overlay{mix-blend-mode: normal;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-top-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-left-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-right-divider{z-index: 9999;}@media only screen and (max-width:1377px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}@media only screen and (min-width:768px) and (max-width: 1024px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}@media only screen and (max-width: 767px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}<\/style><\/div><\/div><\/div><\/div><div class=\"tatsu-section-background-wrap\"><div class = \"tatsu-section-background\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-section-overlay\"><\/div><style>.tatsu-h1nk50vmjl1adzcd .tatsu-section-background{background-image: url(http:\/\/energia.imdea.org\/wp-content\/uploads\/2022\/04\/cabe-proyectos02.jpg);background-repeat: no-repeat;background-attachment: scroll;background-position: top left;background-size: cover;}.tatsu-h1nk50vmjl1adzcd .tatsu-bg-blur{background-repeat: no-repeat;background-attachment: scroll;background-position: top left;background-size: cover;}.tatsu-h1nk50vmjl1adzcd.tatsu-section{margin: 0px 0px 80px 0px;}.tatsu-h1nk50vmjl1adzcd .tatsu-section-offset-wrap{transform: translateY(-0px);}.tatsu-h1nk50vmjl1adzcd > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1nk50vmjl1adzcd > .tatsu-top-divider{z-index: 9999;}.tatsu-h1nk50vmjl1adzcd .tatsu-section-overlay{mix-blend-mode: normal;}<\/style><\/div><div  class=\"tatsu-h1ncdeje3e604amt tatsu-section  tatsu-bg-overlay   tatsu-clearfix\" data-title=\"\"  data-headerscheme=\"background--dark\"><div class='tatsu-section-pad clearfix' data-padding='{\"d\":\"0px 0px 90px 0px\"}' data-padding-top='0px'><div class=\"tatsu-row-wrap  tatsu-wrap tatsu-row-one-col tatsu-row-has-one-cols tatsu-medium-gutter tatsu-reg-cols  tatsu-clearfix tatsu-h1ncdeje69fa2d4j\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-h1ncdeje8od2bruo\"  data-parallax-speed=\"0\" style=\"\"><div class=\"tatsu-column-inner \" ><div class=\"tatsu-column-pad-wrap\"><div class=\"tatsu-column-pad\" ><div  class=\"tatsu-module tatsu-text-block-wrap tatsu-h1ncdejebe9xo0k9  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-h1ncdejebe9xo0k9.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}<\/style>\n<div class=\"rtejustify\">\n<div class=\"rtejustify\">\n<div class=\"rtejustify\">\n<p>Research project corresponding to the call 2022 and reference CNS2022-136004, for grants for \u00abConsolidaci\u00f3n investigadora\u00bb.<\/p>\n<p>Using CO<sub>2<\/sub> as raw material will become the ultimate long-lasting solution for the mitigation of greenhouse gases emission. Provided CO<sub>2<\/sub> is a rather stable compound, its activation and conversion require large energy input, and it is highly desirable that such input comes from the abundant and widely spread solar energy. Therefore, the photoelectrochemical (PEC) CO<sub>2<\/sub> reduction to fuels and other valuable chemicals is an excellent artificial photosynthesis approach that simultaneously addresses the valorisation of CO<sub>2<\/sub> emissions and the storage of renewable solar energy. Additionally, the design of materials used in technologies for large-scale renewable energy conversion must also address sustainability and environmental issues. For this reason, functional polymer semiconductors have been considered as ideal materials for the conversion of solar energy, owing to their versatile functionality and large availability, free from geopolitical constraints.<\/p>\n<p>In this sense, focoSOLAR (Functional Organic Polymer as photoelectrodes for CO<sub>2<\/sub> reduction under solar illumination) action aims at the integral development of robust high-performance photocathodes for CO<sub>2<\/sub> reduction, based on CPPs and CPP\/inorganic semiconductor composite materials. The main focus will be on the design, synthesis and preparation of CPP and CPP\/inorganic composite photoelectrodes for optimum PEC CO<sub>2<\/sub> reduction, developing at the same time comprehensive descriptions of structure-performance relationships for CPPs and composite CO<sub>2<\/sub> reduction photoelectrodes carrying out series of studies based on in-situ spectroscopy.<\/p>\n<p><strong>Partners: <\/strong>IMDEA Energy Institute<\/p>\n<p><strong>Funding Institution\/Program:<\/strong> Ministry of Science and Innovation \/ European Union NextGenerationEU \/ PRTR \/ Consolidaci\u00f3n investigadora 2022<\/p>\n<p><strong>Period:<\/strong> September 2023-August 2025<\/p>\n<p><strong>IMDEA Energy Institute external funding: <\/strong>198.782 \u20ac<\/p>\n<p><strong>IP IMDEA Energy:<\/strong> Dr. Freddy Oropeza<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div><\/div><div  class=\"tatsu-single-image tatsu-module tatsu-image-lazyload tatsu-B1xLGxYLq  \" ><div class=\"tatsu-single-image-inner \" style=\"width : 543px;\" ><div class = \"tatsu-single-image-padding-wrap\" style = \"padding-bottom : 24.493554327808%;\" ><\/div><img class = \"tatsu-gradient-border\" alt = \"\" title = \"logos bloque nuevo\" data-src = \"http:\/\/energia.imdea.org\/wp-content\/uploads\/2023\/11\/logos-bloque-nuevo-1.jpg\" src =\"data:image\/png;base64,iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAQAAAC1HAwCAAAAC0lEQVR42mNkYAAAAAYAAjCB0C8AAAAASUVORK5CYII=\"  \/><\/div><style>.tatsu-B1xLGxYLq .tatsu-single-image-inner{border-style: solid;max-width: 100%;}.tatsu-B1xLGxYLq.tatsu-single-image{transform: translate3d(0px,0px, 0);}<\/style><\/div><\/div><\/div><div class = \"tatsu-column-bg-image-wrap\"><div class = \"tatsu-column-bg-image\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-column-overlay tatsu-animate-none\" ><\/div><\/div><style>.tatsu-row > .tatsu-h1ncdeje8od2bruo.tatsu-column{width: 100%;}.tatsu-h1ncdeje8od2bruo.tatsu-column > .tatsu-column-inner > .tatsu-column-overlay{mix-blend-mode: normal;}.tatsu-h1ncdeje8od2bruo > .tatsu-column-inner > .tatsu-top-divider{z-index: 9999;}.tatsu-h1ncdeje8od2bruo > .tatsu-column-inner > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1ncdeje8od2bruo > .tatsu-column-inner > .tatsu-left-divider{z-index: 9999;}.tatsu-h1ncdeje8od2bruo > .tatsu-column-inner > .tatsu-right-divider{z-index: 9999;}<\/style><\/div><\/div><\/div><\/div><div class=\"tatsu-section-background-wrap\"><div class = \"tatsu-section-background\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-section-overlay\"><\/div><style>.tatsu-h1ncdeje3e604amt .tatsu-section-pad{padding: 0px 0px 90px 0px;}.tatsu-h1ncdeje3e604amt > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1ncdeje3e604amt > .tatsu-top-divider{z-index: 9999;}.tatsu-h1ncdeje3e604amt .tatsu-section-overlay{mix-blend-mode: normal;}<\/style><\/div>\n","protected":false},"excerpt":{"rendered":"<p><a href=\"http:\/\/energia.imdea.org\/en\/porfolio\/focosolar-functional-organic-polymer-as-photoelectrodes-for-co2-reduction-under-solar-illumination\/\" class=\"more-link style1-button\">Read More<\/a><\/p>","protected":false},"author":3,"featured_media":7580,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","format":"standard","meta":{"_vp_format_video_url":"","_vp_image_focal_point":[],"footnotes":""},"portfolio_category":[77],"portfolio_tag":[],"class_list":["post-7584","portfolio","type-portfolio","status-publish","format-standard","has-post-thumbnail","hentry","portfolio_category-nacionales-finalizados-ingles"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.0 - 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