{"id":15854,"date":"2025-08-29T15:20:35","date_gmt":"2025-08-29T13:20:35","guid":{"rendered":"https:\/\/suspicious-boyd.87-106-246-56.plesk.page\/rara-factory-new-alternative-rare-earth-materials\/"},"modified":"2025-08-29T15:20:35","modified_gmt":"2025-08-29T13:20:35","slug":"rara-factory-new-alternative-rare-earth-materials","status":"publish","type":"post","link":"https:\/\/suspicious-boyd.87-106-246-56.plesk.page\/en\/rara-factory-new-alternative-rare-earth-materials\/","title":{"rendered":"RARA Factory: new alternative rare earth materials"},"content":{"rendered":"","protected":false},"excerpt":{"rendered":"<p>How many as children always dreamed of being able to create and shape matter? Today that dream is no longer fantasy, but science. Last July 17 saw <strong>the inauguration of the laboratory of RARA Factory<\/strong>, the <strong>first Italian company that researches and prototypes new alternative materials to rare earths<\/strong>, and it does so in the spaces of the VEGA Science and Technology Park, as a spin-off of Ca&#8217; Foscari University of Venice. The ambitious <strong>goal<\/strong> <strong>is to create sustainable substitutes for the precious minerals that are the basis of the technology<\/strong> we depend on but to which the planet yields great resources and whose extraction processes are not always respectful, either of the environment or of people. At present, <strong>the start-up is able to produce about 150 samples a day<\/strong>, reaching the goal of more than 10,000 annually by the end of 2025, <strong>whose magnetic<\/strong>, <strong>thermal and optical<\/strong> <strong>properties are being tested<\/strong>.   <\/p>\n<p><strong>The basis of the technology<\/strong>  advanced fielded by the enterprise there is  <strong>A patented algorithm that through the use of artificial intelligence simulates the combination of common elements in nature<\/strong>, such as silicon, aluminum, iron, and calcium,  <strong>To give rise to new materials with equivalent or superior properties to known alloys<\/strong>. The team at work consists of physicists and computer scientists, who have worked on more than 45,000 materials. &#8220;<strong><em>As a first goal, we focused on alternative materials to neodymium magnets  <\/em><\/strong>&#8211; explains Stefano Bonetti, Cofounder and Scientific Director of RARA Factory and Full Professor of Experimental Physics of Matter and Applications at Ca&#8217; Foscari &#8211;  <em><strong>for their use in automotive and renewable energy<\/strong>, but our methodology can be applied to any element<\/em>&#8220;.<\/p>\n","protected":false},"author":2,"featured_media":15729,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[2007],"tags":[2105,2106,2109,2108,2107,2013],"class_list":["post-15854","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-green-salus","tag-ca-foscari-en","tag-ca-foscari-university","tag-materials","tag-minerals","tag-rare-earths","tag-sustainability"],"acf":{"categoria":[2007],"sottotitolo_h2":"Company, spin-off, of Ca' Foscari University from Venice challenges the world","immagini_principale":15729,"introduzione":"How many as children always dreamed of being able to create and shape matter? Today that dream is no longer fantasy, but science. Last July 17 saw <strong>the inauguration of the laboratory of RARA Factory<\/strong>, the <strong>first Italian company that researches and prototypes new alternative materials to rare earths<\/strong>, and it does so in the spaces of the VEGA Science and Technology Park, as a spin-off of Ca' Foscari University of Venice. The ambitious <strong>goal<\/strong> <strong>is to create sustainable substitutes for the precious minerals that are the basis of the technology<\/strong> we depend on but to which the planet yields great resources and whose extraction processes are not always respectful, either of the environment or of people. At present, <strong>the start-up is able to produce about 150 samples a day<\/strong>, reaching the goal of more than 10,000 annually by the end of 2025, <strong>whose magnetic<\/strong>, <strong>thermal and optical<\/strong> <strong>properties are being tested<\/strong>.   \n\n<strong>The basis of the technology<\/strong>  advanced fielded by the enterprise there is  <strong>A patented algorithm that through the use of artificial intelligence simulates the combination of common elements in nature<\/strong>, such as silicon, aluminum, iron, and calcium,  <strong>To give rise to new materials with equivalent or superior properties to known alloys<\/strong>. The team at work consists of physicists and computer scientists, who have worked on more than 45,000 materials. \"<strong><em>As a first goal, we focused on alternative materials to neodymium magnets  <\/em><\/strong>- explains Stefano Bonetti, Cofounder and Scientific Director of RARA Factory and Full Professor of Experimental Physics of Matter and Applications at Ca' Foscari -  <em><strong>for their use in automotive and renewable energy<\/strong>, but our methodology can be applied to any element<\/em>\".","paragrafi_articolo":[{"titolo_paragrafo":"Rare earths and the story of the birth of RARA Factory","testo_paragrafo":"\"<em><strong>By 'rare earths' we denote 17 elements<\/strong>, 15 of which are placed in the penultimate row periodic table, endowed with a particular structure<\/em>,\" the academic tells us.  <em>this name arises from a semantic error, in fact <strong>they are not in small concentrations but difficult to locate<\/strong>, but <strong>they are the basis of the technology we use today for electric motors and wind turbines<\/strong>, of which the best known is neodymium, one of the most powerful magnets known but very light. Although <strong>they are critical to the green transition<\/strong>, the<strong>extraction<\/strong> of these elements <strong>involves geopolitical problems<\/strong>, since the monopoly is Chinese but deposits are located in both Asia and Africa. Our goal is to <strong>recreate materials with the same<\/strong>, if not better, <strong>performance but with cost savings of at least 30-40%<\/strong>. There<strong>are<sup>1080<\/sup> combinations of materials<\/strong>, as many as the number of atoms in the universe, thanks to our algorithm <strong>we want to sift through them to find the best alternatives<\/strong>   <\/em>\".\n\nBut how did this idea come about? \"<em>Often things come about by chance and from a combination of factors<\/em>,\" Bonetti confesses.  <em><strong>I have always been fascinated by the world of materials and had in mind different ways of approaching their study<\/strong>, so when I got the <strong>call from Prof. Michele Bugliesi<\/strong>, the other founder, <strong>I left Stockholm to meet in Venice also with Guido Caldarelli<\/strong>, a physicist and network theorist. So between a spritz and a few dinners, the idea was born. <strong>It all started with a phone call from a colleague who<\/strong>, with the outbreak of the conflict in Ukraine,<strong> was concerned about the rising cost of gas and rare earths<\/strong>, critical materials for industry. So we thought, <strong>why not make them in-house?<\/strong> We approached the materials as if they were mathematical objects, pooling our expertise to make the first map of these composites  <\/em>\".","multimedia":"immagine","video":null,"immagine_paragrafo":15731,"didascalia":""},{"titolo_paragrafo":"Computer technology applied to the physics of materials by RARA Factory","testo_paragrafo":"\"<em><strong>The laboratory we set up is equipped with advanced computational systems<\/strong> for designing new materials <strong>using a proprietary AI model<\/strong><\/em>,\" adds the physicist.  <em><strong>complemented by tools for synthesizing new alloys that we literally \"make in house\"<\/strong> from mathematically developed models for their composition. So far, <strong>the algorithm has been successfully tested on more than <\/strong>  <\/em><strong><em>45,000 materials<\/em><\/strong><em>, demonstrating the <strong>potential to revolutionize the supply of critical raw materials<\/strong> for strategic economic and industrial sectors, as well as technology.<\/em> <em>It was precisely <strong>to focus on the ecological transition that we focused on magnets<\/strong> as our first target, given the high demand<\/em>.\"\n\nBut once these materials are discovered, how are they then developed? \"<em>Our desire is not only to demonstrate scientific impact<\/em>,\" clarifies Michele Bugliesi, Founder and CEO of RARA Factory, Full Professor of Computer Science and former Rector of Ca' Foscari.  <em><strong>the goal is, through industrial partners, to create a complete value chain, defining large-scale production of<\/strong> these new materials that, <strong>once patented, can be licensed for use<\/strong>, as is already done with vibram and gore-tex, for example, creating something similar in the field of metals. At the moment we are about ten collaborators in addition to the founders, <strong>but we have already received support from entities such as Unicredit and Motor Valley Accelerator and Plug and Play<\/strong> <\/em>\".","multimedia":"immagine","video":null,"immagine_paragrafo":15733,"didascalia":""},{"titolo_paragrafo":"Environmental impact and sustainable development with rare earth alternatives","testo_paragrafo":"<strong>The proprietary algorithm was programmed from scratch and is covered by a registered patent<\/strong> as Professor Bonetti explains, \"<em>One part is quite standardized, while the AI part was developed internally, <strong>the key to everything for the technology to work, however, is to give input data to be processed correctly<\/strong>, so we <strong>worked a lot on the database<\/strong>, composed starting also from open sources but full of errors that we corrected through testing and creation of these materials, <strong>the artificial intelligence then supports us by learning consistently from the processes<\/strong>, correcting the source information accordingly <strong>through laboratory testing.<\/strong> In short, the revolutionizing part is the quality of the final data, because while AI has been in the market for 10 years at least, in the field of materials <strong>the stumbling block was information<\/strong>, because as they say in America \"Garbage in, garbage out\" <\/em>\".\n\n\"<em><strong>We then wanted to be credible in front of companies<\/strong> not only with theory but <strong>with practice<\/strong><\/em>,\" the lecturer concludes.  <em>for this <strong>materials we not only design them on the computer but also make them through a mini-creation<\/strong> and characterization <strong>facility<\/strong> <strong>to test them<\/strong> to follow. Thanks to our algorithm's technology <strong>it is as if we can draw a map of uncharted territory<\/strong>, in fact<strong> 99% of what we will make and analyze will be materials that have never been produced<\/strong>, and the more we make the more predictive artificial intelligence can be. <strong>In this way we could reduce the impact of rare earth mining and its human and environmental cost<\/strong> by using the poorest and most common materials possible, with the option of opening ourselves up to reuse and recycling. <strong>All of this, with global impacts, will start in Venice<\/strong>, where there was an opportunity for a meeting of knowledge and support for a project like this <\/em>\".","multimedia":"immagine","video":null,"immagine_paragrafo":15735,"didascalia":"Professors Michele Bugliesi and Stefano Bonetti"}],"parole_chiave":[]},"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.1.1 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>RARA Factory: new alternative rare earth materials - 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