{"id":6030,"date":"2023-03-16T15:02:02","date_gmt":"2023-03-16T15:02:02","guid":{"rendered":"https:\/\/energia.imdea.org\/?post_type=portfolio&#038;p=6030"},"modified":"2024-07-03T07:53:59","modified_gmt":"2024-07-03T07:53:59","slug":"microbat-modeling-and-development-of-membraneless-microfluidic-redox-flow-batteries-based-on-immiscible-electrolytes","status":"publish","type":"portfolio","link":"http:\/\/energia.imdea.org\/en\/porfolio\/microbat-modeling-and-development-of-membraneless-microfluidic-redox-flow-batteries-based-on-immiscible-electrolytes\/","title":{"rendered":"MICROBAT: Modeling and Development of Membraneless Microfluidic Redox Flow Batteries Based on Immiscible Electrolytes"},"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>MICROBAT: Modelado y desarrollo de bater\u00edas de flujo microflu\u00eddicas basadas en electrolitos inmiscibles<\/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 2021 and reference: TED2021-129378B-C22, within the State Program to Promote Scientific-Technical Research and its Transfer (Strategic Projects Oriented to Ecological Transition and Digital Transition).<\/p>\n<p>The MICROBAT project aims to contribute to the development of small-sized RFBs with disruptive membraneless architectures based on microfluidic concepts that demonstrate high performance and long-cycling and that might be considered as a real alternative to conventional RFBs. To do that, MICROBAT proposes for the first time a joint effort of microfluidics and thermo-dynamics by the implementation of innovative microfluidic designs with immiscible biphasic electrolytes.<\/p>\n<p>In brief, the subproject (UC3M) will be responsible for the extensive characterization of fluid dynamic properties of the electrolyte and the developments of fluid dynamic models and numerical simulation of each component and the full microbattery. On the other hand, the subproject 2 (IMDEA-E) will be responsible for the fabrication of microfluidic RFBs in the range of a few micrometres to a millimeter using 3D printing. The assembly and characterizarion of microfluidic RFBs will be developed by both groups targeting at two different electrolytes; conventional electrolytes in the case of UC3M (subproject 1) and immiscible electrolytes in the case of IMDEA-E (subproject 2).<\/p>\n<p><strong>Partners<\/strong>: IMDEA Energy Institute; Carlos III University of Madrid (Coordinator)<\/p>\n<p><strong>Funding Institution\/Program<\/strong>: Ministry of Science and Innovation &#8211; European Union NextGenerationEU &#8211; PRTR \/ Strategic Projects Oriented to Ecological Transition and Digital Transition<\/p>\n<p><strong>Period<\/strong>: December 2022-Septiembre 2025<\/p>\n<p><strong>IMDEA Energy Institute external funding<\/strong>: 184.000 \u20ac<\/p>\n<p><strong>IP<\/strong>: Dr. Rebeca Marcilla<\/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 : 683px;\" ><div class = \"tatsu-single-image-padding-wrap\" style = \"padding-bottom : 21.961932650073%;\" ><\/div><img class = \"tatsu-gradient-border\" alt = \"\" title = \"logos h2mof\" data-src = \"http:\/\/energia.imdea.org\/wp-content\/uploads\/2023\/03\/logos-h2mof.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\/microbat-modeling-and-development-of-membraneless-microfluidic-redox-flow-batteries-based-on-immiscible-electrolytes\/\" class=\"more-link style1-button\">Read More<\/a><\/p>","protected":false},"author":3,"featured_media":6026,"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-6030","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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