{"id":3375,"date":"2022-05-11T09:46:59","date_gmt":"2022-05-11T09:46:59","guid":{"rendered":"https:\/\/nuevaimdeaenergia.es\/porfolio\/fotoart-cm-nueva-generacion-de-materiales-multifuncionales-para-fotosintesis-artificial\/"},"modified":"2022-06-07T14:50:26","modified_gmt":"2022-06-07T14:50:26","slug":"fotoart-cm-nueva-generacion-de-materiales-multifuncionales-para-fotosintesis-artificial","status":"publish","type":"portfolio","link":"http:\/\/energia.imdea.org\/en\/porfolio\/fotoart-cm-nueva-generacion-de-materiales-multifuncionales-para-fotosintesis-artificial\/","title":{"rendered":"FotoArt-CM: New generation of multifunctional materials for artificial photosynthesis"},"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>FotoArt-CM: New generation of multifunctional materials for artificial photosynthesis <\/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<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">Program of R&amp;D activities between research groups of \u201cComunidad de Madrid\u201d, co-funded with the European Social Fund and European Regional Development Fund, coordinated by Dr. V\u00edctor Manuel de la Pe\u00f1a O\u00b4Shea de la Fundaci\u00f3n IMDEA Energ\u00eda (Ref: S2018\/NMT-4367).<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">One of most important and elusive challenges that Science faces today is the development of technologies capable of alleviating the effect of greenhouse gases as main actors of global warming. To face this challenge, it is vital to develop a new generation of efficient technologies and materials based on sustainable energy sources that allow not only to decrease these emissions, but also to reduce their concentration in the atmosphere by means of their valorization.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">One of the most promising strategies in this respect is the socalled\u00a0<strong><em>artificial photosynthesis<\/em><\/strong>, which leads to the valorization of abundant feedstocks (CO2, H2, N2 and biomass) to obtain fuels and chemicals. However, this is a complex process that involves the consecutive coupling of several optical, chargetransfer and catalytic processes, which happen at different timescales. In order for this coupling to be effective, the development of complex systems able to simultaneously and efficiently managing photons and electrons is required.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">The main goal of the FotoArtCM program is to develop new generation of multifunctional materials and devices that make an efficient use of renewable energy, mainly solar, to obtain fuels and chemical through artificial photosynthesis. For that purpose, FotoArtCM proposes different strategies to alleviate the current technological limitations like availability and stability of the developed materials, the efficiency of reactor and processes and the energy return on investment (EROI), which would guarantee a technologically and economically viable scaleup.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">Precisely, the activities of FotoArtCM are focused on the following partial objectives:<\/span><\/p>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong><em>Design of model nanocatalysts\u00a0<\/em><\/strong>via a unique combination of experimental and theoretical tools.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong><em>Development of multifunctional catalysts\u00a0<\/em><\/strong>that allow to carry out efficiently and selectively the oxidationreduction reactions implied in the artificial photosynthesis processes (photoand photoelectrocatalytic).<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong><em>Multifunctional nanocarbon-based fibres<\/em><\/strong>, where research will focus in the development of flexible photoelectrodes combining different hybrid fibres of CNT and physicochemical functionalization processes.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong><em>Study of structure-activity relationships\u00a0<\/em><\/strong>by combining advanced theoretical and characterization tools.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong><em>Prospective techno-economical and sustainability-analysis.<\/em><\/strong><\/span><\/div>\n<div class=\"rtejustify\">\u00a0<\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Partners:\u00a0<\/strong>Instituto IMDEA Energ\u00eda (Coordinador); Instituto IMDEA Materiales, Instituto IMDEA Nanociencia; CSIC; UAM; BihurCrystal, SYNTHELIA ORGANIC, GNANOMAT, SPECS, HUNOSA, OFICEMEN, MAGES, ENAGAS, REPSOL, CEPSA, MERCEDES BENZ y Liken Carbon Hub.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Funding Institution\/Program:<\/strong>\u00a0Comunidad de Madrid\/Program of R&amp;D activities between research groups in Technology 2018.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Period:<\/strong>\u00a0January 2019-April\u00a02023<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Principal researcher:\u00a0<\/strong>Dr. V\u00edctor A. de la Pe\u00f1a O\u00b4Shea<\/span><\/div>\n<\/div><\/div><div  class=\"tatsu-single-image tatsu-module tatsu-image-lazyload tatsu-B1xLGxYLq  \" ><div class=\"tatsu-single-image-inner \" style=\"width : 749px;\" ><div class = \"tatsu-single-image-padding-wrap\" style = \"padding-bottom : 20.694259012016%;\" ><\/div><img class = \"tatsu-gradient-border\" alt = \"\" title = \"Captura de pantalla 2022-05-11 a las 11.47.34\" data-src = \"http:\/\/energia.imdea.org\/wp-content\/uploads\/2022\/05\/Captura-de-pantalla-2022-05-11-a-las-11.47.34.png\" 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\/fotoart-cm-nueva-generacion-de-materiales-multifuncionales-para-fotosintesis-artificial\/\" class=\"more-link style1-button\">Read 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