{"id":60275,"date":"2023-09-12T11:34:52","date_gmt":"2023-09-12T09:34:52","guid":{"rendered":"https:\/\/www.iemn.fr\/?page_id=60275"},"modified":"2026-01-13T15:35:22","modified_gmt":"2026-01-13T13:35:22","slug":"projet-anr-pocoma","status":"publish","type":"page","link":"https:\/\/www.iemn.fr\/en\/projet-anr-pocoma","title":{"rendered":"ANR POCOMA project"},"content":{"rendered":"<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-obgwup-e849561b42eb2866e0aa5229228349dd\">\n.flex_column.av-obgwup-e849561b42eb2866e0aa5229228349dd{\nborder-radius:0px 0px 0px 0px;\npadding:0px 0px 0px 0px;\n}\n<\/style>\n<div  class='flex_column av-obgwup-e849561b42eb2866e0aa5229228349dd av_one_full  avia-builder-el-0  el_before_av_one_full  avia-builder-el-first  first flex_column_div av-zero-column-padding'     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-l48hjacc-51f1c3abb998a01ce275ef5054d6adcb\">\n.avia-image-container.av-l48hjacc-51f1c3abb998a01ce275ef5054d6adcb img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-l48hjacc-51f1c3abb998a01ce275ef5054d6adcb .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-l48hjacc-51f1c3abb998a01ce275ef5054d6adcb av-styling- avia-align-center  avia-builder-el-1  avia-builder-el-no-sibling'   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-53098 avia-img-lazy-loading-not-53098 avia_image' src=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2022\/06\/logo_anr.jpg\" alt='' title='logo_anr'  height=\"85\" width=\"300\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2022\/06\/logo_anr.jpg 300w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2022\/06\/logo_anr-18x5.jpg 18w\" sizes=\"(max-width: 300px) 100vw, 300px\" \/><\/div><\/div><\/div><\/div>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-l48hejsx-e4793490ff2a2a809d51b2d1d36f4496\">\n.flex_column.av-l48hejsx-e4793490ff2a2a809d51b2d1d36f4496{\nborder-radius:20px 20px 20px 20px;\npadding:10px 10px 10px 10px;\nbackground-color:#ebb401;\n}\n<\/style>\n<div  class='flex_column av-l48hejsx-e4793490ff2a2a809d51b2d1d36f4496 av_one_full  avia-builder-el-2  el_after_av_one_full  el_before_av_one_full  first flex_column_div  column-top-margin'     ><section  class='av_textblock_section av-l48hdtga-55abfa5656db44fdd76b37aed52962f6'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h3 style=\"text-align: center;\">Projet -ANR-21-CE09-0040<\/h3>\n<\/div><\/section><\/div>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-lkgiy9-6fe9252508a87bef590816866096ff99\">\n.flex_column.av-lkgiy9-6fe9252508a87bef590816866096ff99{\nborder-radius:0px 0px 0px 0px;\npadding:20px 0px 20px 0px;\n}\n<\/style>\n<div  class='flex_column av-lkgiy9-6fe9252508a87bef590816866096ff99 av_one_full  avia-builder-el-4  el_after_av_one_full  el_before_av_textblock  first flex_column_div  column-top-margin'     ><section  class='av_textblock_section av-l48g5n3e-d14dff6097a6073ddf6a61e5992886d8'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h4>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mqde7m-b8f4c22e6bbeb9225144fbb1e9b8c6d8\">\n.av_font_icon.av-mqde7m-b8f4c22e6bbeb9225144fbb1e9b8c6d8{\ncolor:#ebb401;\nborder-color:#ebb401;\n}\n.av_font_icon.av-mqde7m-b8f4c22e6bbeb9225144fbb1e9b8c6d8 .av-icon-char{\nfont-size:25px;\nline-height:25px;\n}\n<\/style>\n<span  class='av_font_icon av-mqde7m-b8f4c22e6bbeb9225144fbb1e9b8c6d8 avia_animate_when_visible av-icon-style- avia-icon-pos-left avia-icon-animate'><span class='av-icon-char' aria-hidden='true' data-av_icon='\ue889' data-av_iconfont='entypo-fontello' ><\/span><\/span> POCOMA<\/h4>\n<h4>Polymer membranes for personal thermal comfort management<\/h4>\n<\/div><\/section><\/div>\n<section  class='av_textblock_section av-1k722xf-904f55b40f80c5eacd6d14bbdbdab11f'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><div class=\"accordion\">\n<div class=\"card\">\n<div id=\"collapse-submissionSummary\" class=\"collapse show\">\n<div class=\"card-body\">\n<p>En France, le b\u00e2timent repr\u00e9sente 43% de l\u2019\u00e9nergie totale consomm\u00e9e, dont la plus grande partie (65%) est d\u00e9di\u00e9e aux syst\u00e8mes de chauffage et de refroidissement. En d\u00e9pla\u00e7ant la probl\u00e9matique \u00e0 l\u2019\u00e9chelle d\u2019une personne plut\u00f4t que du b\u00e2timent, le projet POCOMA vise \u00e0 apporter une solution pour r\u00e9duire cette consommation. Nous proposons de concevoir des membranes polym\u00e8res modifiant, dans le moyen IR, les propri\u00e9t\u00e9s des textiles auxquels elles sont fix\u00e9es, agissant ainsi sur le principal m\u00e9canisme de transfert de chaleur du corps humain au repos. Nous \u00e9tudierons dans ce cadre deux structures, qui pourront \u00e9galement \u00eatre coupl\u00e9es : des membranes polym\u00e8res charg\u00e9es en nano voire micro particules et des membranes structur\u00e9es en cristal photonique aux longueurs d\u2019onde du moyen IR.<br \/>\nLe consortium poss\u00e8de d\u00e9j\u00e0 une expertise sur la th\u00e9matique, aussi, plus que la d\u00e9monstration de principe qui a d\u00e9j\u00e0 \u00e9t\u00e9 r\u00e9alis\u00e9e pr\u00e9c\u00e9demment, nous visons l\u2019obtention de d\u00e9monstrateurs avec un TRL5 compatibles avec l\u2019application (mat\u00e9riaux, taille et proc\u00e9d\u00e9). La pr\u00e9sence de la soci\u00e9t\u00e9 DAMART, reconnue sur la th\u00e9matique, permettra de tenir compte des contraintes sp\u00e9cifiques li\u00e9es \u00e0 l\u2019application textile pour l\u2019habillement.<br \/>\nLe projet se compose de 4 volets : la mod\u00e9lisation des membranes, leur fabrication \u00e0 l\u2019\u00e9chelle du laboratoire et leur caract\u00e9risation mais \u00e9galement un aspect industrialisation avec la recherche de proc\u00e9d\u00e9s de fonctionnalisation des textiles et de fabrication des structures compatibles avec l\u2019\u00e9chelle industrielle.<br \/>\nLa mod\u00e9lisation des structures permettra de pr\u00e9dire leur comportement \u00e0 la fois optique, dans le moyen infra-rouge, et thermique. Elle tiendra compte de la structuration \u00e0 l\u2019\u00e9chelle microscopique et\/ou de la charge (micro ou nanoparticules) des membranes. Elle s\u2019appuiera sur des mod\u00e8les \u00e9tablis dans de pr\u00e9c\u00e9dents travaux mais en explorant de nouvelles possibilit\u00e9s, telles que l\u2019augmentation de la taille des nanoparticules au-del\u00e0 du micron, s\u2019approchant ainsi de la longueur d\u2019onde d\u2019int\u00e9r\u00eat, ou encore l\u2019effet de l\u2019humidit\u00e9 sur les propri\u00e9t\u00e9s optiques et thermiques.<br \/>\nConcernant la fabrication, le principal d\u00e9fi consiste \u00e0 utiliser des proc\u00e9d\u00e9s pouvant \u00eatre industrialis\u00e9s par la suite. Les proc\u00e9d\u00e9s de d\u00e9p\u00f4t \u00ab layer by layer \u00bb pour les membranes charg\u00e9es et de \u00ab hot embossing \u00bb pour les membranes microstructur\u00e9es seront les principaux axes d\u2019\u00e9tudes. Cependant d\u2019autres solutions permettant de produire rapidement des \u00e9chantillons seront \u00e9galement utilis\u00e9es. Par ailleurs, l\u2019\u00e9lectrospinning sera \u00e9tudi\u00e9 \u00e9galement comme une voie permettant d\u2019allier les 2 strat\u00e9gies propos\u00e9es.<br \/>\nLe volet caract\u00e9risation s\u2019organisera d\u2019une part autour de la d\u00e9termination des caract\u00e9ristiques (indices optiques complexes) des mat\u00e9riaux dans le moyen infrarouge, domaine peu explor\u00e9 dans la litt\u00e9rature et pourtant n\u00e9cessaire \u00e0 la simulation de nos structures. D\u2019autre part, les membranes et les complexes membranes\/textiles fabriqu\u00e9s seront \u00e9galement qualifi\u00e9s au regard de leurs propri\u00e9t\u00e9s optiques et thermiques. Les r\u00e9sultats de ces caract\u00e9risations seront confront\u00e9s \u00e0 la simulation. Afin de pouvoir caract\u00e9riser de fa\u00e7on qualitative des \u00e9chantillons de petites dimensions produits en laboratoire, la mise en place d\u2019un dispositif de caract\u00e9risation thermique aux performances am\u00e9lior\u00e9es (sensibilit\u00e9) sera entreprise dans le cadre de ce projet.<br \/>\nEnfin, le passage \u00e0 des \u00e9chantillons de tailles et structures compatibles avec des tests normalis\u00e9s sera abord\u00e9. La fonctionnalisation des textiles par les membranes microstructur\u00e9es sera effectu\u00e9e soit par lamination sur textile de membranes d\u00e9j\u00e0 structur\u00e9es, soit par enduction puis structuration, solutions plus compatibles avec l\u2019industrie textile. DAMART qualifiera ensuite les d\u00e9monstrateurs produits en termes d\u2019efficacit\u00e9 thermique, de confort et de r\u00e9sistance \u00e0 l\u2019usage.<\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<section class=\"block block-info\">\n<header class=\"block__header block__header--icon\">\n<figure class=\"block__header__icon\"><\/figure>\n<\/header>\n<\/section>\n<p><a href=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2022\/06\/croquis1.jpg\">\u00a0<\/a><\/p>\n<\/div><\/section>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1ck8e37-6c288a7f6c0e3d2cd0763a92816377af\">\n.flex_column.av-1ck8e37-6c288a7f6c0e3d2cd0763a92816377af{\nborder-radius:0px 0px 0px 0px;\npadding:20px 0px 20px 0px;\n}\n<\/style>\n<div  class='flex_column av-1ck8e37-6c288a7f6c0e3d2cd0763a92816377af av_one_full  avia-builder-el-8  el_after_av_textblock  el_before_av_textblock  first flex_column_div  column-top-margin'     ><section  class='av_textblock_section av-mhk8kmsj-612643265e7b10054c88e1a378fecaed'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h4>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-pp2h3n-e5d25852bb210d86c49a2dece0f98e7c\">\n.av_font_icon.av-pp2h3n-e5d25852bb210d86c49a2dece0f98e7c{\ncolor:#ebb401;\nborder-color:#ebb401;\n}\n.av_font_icon.av-pp2h3n-e5d25852bb210d86c49a2dece0f98e7c .av-icon-char{\nfont-size:25px;\nline-height:25px;\n}\n<\/style>\n<span  class='av_font_icon av-pp2h3n-e5d25852bb210d86c49a2dece0f98e7c avia_animate_when_visible av-icon-style- avia-icon-pos-left avia-icon-animate'><span class='av-icon-char' aria-hidden='true' data-av_icon='\ue889' data-av_iconfont='entypo-fontello' ><\/span><\/span> D\u00e9couvrez la th\u00e8se de Amir Ghahari :<\/h4>\n<\/div><\/section><\/div>\n<section  class='av_textblock_section av-l48g64e5-d7772cf38373e1395e19db96febaa039'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><div class=\"accordion\">\n<div class=\"card\">\n<div id=\"collapse-submissionSummary\" class=\"collapse show\">\n<div class=\"card-body\">\n<p>\u00a0Abstract:<br \/>\nThis Ph.D. thesis focused on the development of electrospun nanofibrous membranes designed to improve personal thermal comfort through the passive control of thermal radiation. Since radiation accounts for nearly 50% of the body\u2019s heat loss, the main objective of this work was to design and fabricate membranes capable of either reflecting or absorbing thermal radiation, enabling radiative heating or radiative cooling, respectively.<br \/>\nFor the radiation-reflective membranes, polyacrylonitrile (PAN) nanofibers incorporated with silver (Ag) or zinc oxide (ZnO) particles were electrospun. It was demonstrated that ZnO particles could be successfully incorporated up to 70 wt.% of PAN in both thin (510\u00b164 nm) and coarse (643\u00b159 nm) nanofibers, whereas Ag particles could be incorporated up to 50 wt.% in thin nanofibers and 40 wt.% in coarse nanofibers. The results revealed that membranes containing Ag particles showed significantly higher thermal radiation reflectance than those containing ZnO. Higher concentrations of Ag and ZnO led to improved radiation reflection. Moreover, coarse nanofibers exhibited greater reflectance than thinner ones at the same particle concentration, highlighting the influence of nanofiber diameter.<br \/>\nFor the radiation-absorptive membranes, polyvinylidene fluoride (PVDF) nanofibers incorporated with silicon dioxide (SiO2) particles were electrospun. Another distinctive aspect of this work is the optimization of PVDF electrospinning conditions using Response Surface Methodology (RSM) with a Doehlert design. Both pure PVDF nanofibers and SiO2-loaded PVDF nanofibers demonstrated the ability to absorb thermal radiation, confirming their potential for radiative cooling. Increasing the concentration of SiO2 enhanced this absorption capability.<br \/>\nOverall, these membranes provide lightweight, thin, flexible, and breathable textile layers that can be integrated into conventional clothing to enhance personal thermal comfort.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-75471 size-full\" src=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma.jpg\" alt=\"\" width=\"1200\" height=\"456\" srcset=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma.jpg 1200w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-300x114.jpg 300w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-1030x391.jpg 1030w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-768x292.jpg 768w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-18x7.jpg 18w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-705x268.jpg 705w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2025\/11\/anr_pocoma-845x321.jpg 845w\" sizes=\"auto, (max-width: 1200px) 100vw, 1200px\" \/><\/p>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div><\/section>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-lkgiy9-17-7016c0312cf8f505a7cd2a1377a38d3b\">\n.flex_column.av-lkgiy9-17-7016c0312cf8f505a7cd2a1377a38d3b{\nborder-radius:0px 0px 0px 0px;\npadding:20px 0px 20px 0px;\n}\n<\/style>\n<div  class='flex_column av-lkgiy9-17-7016c0312cf8f505a7cd2a1377a38d3b av_one_full  avia-builder-el-12  el_after_av_textblock  el_before_av_one_half  first flex_column_div  column-top-margin'     ><section  class='av_textblock_section av-l48g5n3e-16-eb28c64b2f55f8a44d0edd51c893e213'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h4>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mqde7m-15-0514fedc530b80314ecc0c11eec900c1\">\n.av_font_icon.av-mqde7m-15-0514fedc530b80314ecc0c11eec900c1{\ncolor:#ebb401;\nborder-color:#ebb401;\n}\n.av_font_icon.av-mqde7m-15-0514fedc530b80314ecc0c11eec900c1 .av-icon-char{\nfont-size:25px;\nline-height:25px;\n}\n<\/style>\n<span  class='av_font_icon av-mqde7m-15-0514fedc530b80314ecc0c11eec900c1 avia_animate_when_visible av-icon-style- avia-icon-pos-left avia-icon-animate'><span class='av-icon-char' aria-hidden='true' data-av_icon='\ue889' data-av_iconfont='entypo-fontello' ><\/span><\/span>Partners<\/h4>\n<h5><\/h5>\n<\/div><\/section><\/div>\n<div class='flex_column_table av-237o9w1-cd438bafe80ab5c33f888bda2691441e sc-av_one_half av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-237o9w1-cd438bafe80ab5c33f888bda2691441e\">\n@keyframes av_boxShadowEffect_av-237o9w1-cd438bafe80ab5c33f888bda2691441e-column {\n0%   { box-shadow:  0 0 0 0 #d3d3d3; opacity: 1; }\n100% { box-shadow:  0 0 10px 0 #d3d3d3; opacity: 1; }\n}\n.flex_column.av-237o9w1-cd438bafe80ab5c33f888bda2691441e{\nbox-shadow: 0 0 10px 0 #d3d3d3;\nborder-width:2px;\nborder-color:#cccccc;\nborder-style:solid;\nborder-radius:10px 10px 10px 10px;\npadding:20px 20px 20px 20px;\n}\n<\/style>\n<div  class='flex_column av-237o9w1-cd438bafe80ab5c33f888bda2691441e av_one_half  avia-builder-el-15  el_after_av_one_full  el_before_av_one_half  first flex_column_table_cell av-equal-height-column av-align-middle shadow-not-animated  column-top-margin'     ><section  class='av_textblock_section av-l48gdxv4-2ae09003fd94017ae2e0fee6578cc2d3'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h4><a href=\"https:\/\/www.iemn.fr\/en\/\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-42329 aligncenter\" src=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2020\/09\/logo_iemn_def-300x110.jpg\" alt=\"\" width=\"300\" height=\"110\" srcset=\"https:\/\/www.iemn.fr\/wp-content\/uploads\/2020\/09\/logo_iemn_def-300x110.jpg 300w, https:\/\/www.iemn.fr\/wp-content\/uploads\/2020\/09\/logo_iemn_def.jpg 340w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><\/a><\/h4>\n<h4 style=\"text-align: center;\"><strong>Institut d\u2019Electronique, de Micro\u00e9lectronique et de Nanotechnologie, IEMN<\/strong><\/h4>\n<h5 style=\"text-align: center;\"><em>Coordinatrice : Michel CARETTE<br \/>\n<a href=\"\/en\/michele.carette@univ-lille.fr\/\" target=\"_blank\" rel=\"noopener\">michele.carette@univ-lille.fr<\/a><\/em><\/h5>\n<\/div><\/section><\/div>\n<div class='av-flex-placeholder'><\/div>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-237o9w1-11-8b7ad9c2e1245929bee3807f68f15296\">\n@keyframes av_boxShadowEffect_av-237o9w1-11-8b7ad9c2e1245929bee3807f68f15296-column {\n0%   { box-shadow:  0 0 0 0 #d3d3d3; 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Autoclose: 1 -->\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-lkgiy9-14-2c8e0944eee09df78e71b202fe4921e9\">\n.flex_column.av-lkgiy9-14-2c8e0944eee09df78e71b202fe4921e9{\nborder-radius:0px 0px 0px 0px;\npadding:20px 0px 20px 0px;\n}\n<\/style>\n<div  class='flex_column av-lkgiy9-14-2c8e0944eee09df78e71b202fe4921e9 av_one_full  avia-builder-el-31  el_after_av_one_half  el_before_av_sidebar  first flex_column_div  column-top-margin'     ><section  class='av_textblock_section av-l48g5n3e-13-7278ea6f22ac0f17c9a39b622a792934'   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><h4>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mqde7m-12-65dd059eb6bf7dc6c069ae00ca548784\">\n.av_font_icon.av-mqde7m-12-65dd059eb6bf7dc6c069ae00ca548784{\ncolor:#ebb401;\nborder-color:#ebb401;\n}\n.av_font_icon.av-mqde7m-12-65dd059eb6bf7dc6c069ae00ca548784 .av-icon-char{\nfont-size:25px;\nline-height:25px;\n}\n<\/style>\n<span  class='av_font_icon av-mqde7m-12-65dd059eb6bf7dc6c069ae00ca548784 avia_animate_when_visible av-icon-style- avia-icon-pos-left avia-icon-animate'><span class='av-icon-char' aria-hidden='true' data-av_icon='\ue826' data-av_iconfont='entypo-fontello' ><\/span><\/span><\/h4>\n<h4><a href=\"https:\/\/haltools.archives-ouvertes.fr\/Public\/afficheRequetePubli.php?projet_anr=57518&amp;CB_auteur=oui&amp;CB_titre=oui&amp;CB_identifiant=oui&amp;CB_article=oui&amp;CB_vignette=oui&amp;langue=Anglais&amp;tri_exp=annee_publi&amp;tri_exp2=typdoc&amp;tri_exp3=date_publi&amp;ordre_aff=TA&amp;CB_rubriqueDiv=oui&amp;Fen=Aff&amp;css=..\/css\/VisuRubriqueEncadre.css\" target=\"_blank\" rel=\"noopener\">D\u00e9couvrez toutes les publications du projet POCOMA<\/a><\/h4>\n<h5><\/h5>\n<\/div><\/section><\/div><\/p>\n<div  class='avia-builder-widget-area clearfix  avia-builder-el-34  el_after_av_one_full  avia-builder-el-last'><div id=\"hal-plus-publications-18\" class=\"widget clearfix wphal-plus-publications\"><h3 class=\"widgettitle\">Recently published by partner IEMN<\/h3><ul class=\"widhal-ul\"><li class=\"widhal-li\"><a href=\"https:\/\/hal.science\/hal-05535238v1\" target=\"_blank\" rel=\"noopener\">A Visible-Opaque Infrared-Modulator Fabric for Human Body Thermoregulation at Low Temperatures<\/a><\/li><li class=\"widhal-li\"><a href=\"https:\/\/hal.science\/hal-05568387v1\" target=\"_blank\" rel=\"noopener\">Passive polymer-based photonic membrane for thermal comfort<\/a><\/li><li class=\"widhal-li\"><a href=\"https:\/\/hal.science\/hal-05294684v1\" target=\"_blank\" rel=\"noopener\">Polymer-Based Microstructured Photonic Membrane for Passive Heating Textiles<\/a><\/li><li class=\"widhal-li\"><a href=\"https:\/\/hal.science\/hal-04727635v1\" target=\"_blank\" rel=\"noopener\">Improving thermal comfort: an example of the application of microtechnology to textiles<\/a><\/li><li class=\"widhal-li\"><a href=\"https:\/\/cea.hal.science\/cea-04193634v1\" target=\"_blank\" rel=\"noopener\">Porous silicon-nanowire-based electrode for the photoelectrocatalytic production of hydrogen<\/a><\/li><\/ul><\/div><\/div>","protected":false},"excerpt":{"rendered":"","protected":false},"author":20,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-60275","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/pages\/60275","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/users\/20"}],"replies":[{"embeddable":true,"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/comments?post=60275"}],"version-history":[{"count":10,"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/pages\/60275\/revisions"}],"predecessor-version":[{"id":76884,"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/pages\/60275\/revisions\/76884"}],"wp:attachment":[{"href":"https:\/\/www.iemn.fr\/en\/wp-json\/wp\/v2\/media?parent=60275"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}