{"id":199311,"date":"2021-03-10T21:00:01","date_gmt":"2021-03-10T18:00:01","guid":{"rendered":"https:\/\/en.buradabiliyorum.com\/new-material-will-triple-the-capacity-of-lithium-ion-batteries\/"},"modified":"2021-03-10T21:00:01","modified_gmt":"2021-03-10T18:00:01","slug":"new-material-will-triple-the-capacity-of-lithium-ion-batteries","status":"publish","type":"post","link":"https:\/\/buradabiliyorum.com\/en\/new-material-will-triple-the-capacity-of-lithium-ion-batteries\/","title":{"rendered":"#New material will triple the capacity of lithium-ion batteries"},"content":{"rendered":"<p>&#8220;<strong>#New material will <a href=\"https:\/\/buradabiliyorum.com\/en\/category\/trip-and-travel\/\" data-internallinksmanager029f6b8e52c=\"10\" title=\"Trip &amp; Travel\" target=\"_blank\" rel=\"noopener\">trip<\/a>le the capacity of lithium-ion batteries<\/strong>&#8221;<\/p>\n<div>\n<div class=\"article-gallery lightGallery\">\n<div data-thumb=\"https:\/\/scx1.b-cdn.net\/csz\/news\/tmb\/2021\/newmaterialw.jpg\" data-src=\"https:\/\/scx2.b-cdn.net\/gfx\/news\/2021\/newmaterialw.jpg\" data-sub-html=\"Credit: National University of Science and Technology MISIS\">\n<figure class=\"article-img\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/scx1.b-cdn.net\/csz\/news\/800a\/2021\/newmaterialw.jpg\" alt=\"New material will triple the capacity of lithium-ion batteries\" title=\"Credit: National University of Science and Technology MISIS\" width=\"800\" height=\"530\"\/><figcaption class=\"text-darken text-low-up text-truncate-js text-truncate mt-3\">\n                Credit: National University of <a href=\"https:\/\/buradabiliyorum.com\/en\/category\/sciencee\/\" data-internallinksmanager029f6b8e52c=\"5\" title=\"Science\" target=\"_blank\" rel=\"noopener\">Science<\/a> and <a href=\"https:\/\/buradabiliyorum.com\/en\/category\/technology\/\" data-internallinksmanager029f6b8e52c=\"4\" title=\"Technology\" target=\"_blank\" rel=\"noopener\">Technology<\/a> MISIS<br \/>\n            <\/figcaption><\/figure>\n<\/div>\n<\/div>\n<p>Scientists of the National University of Science and Technology &#8220;MISIS&#8221; (NUST MISIS), part of an international team of researchers, managed to increase the capacity and extend the service life of lithium-ion batteries. According to the researchers, they have synthesized a new nanomaterial that can replace low-efficiency graphite used in lithium-ion batteries today. The results of the research are published in the <i>Journal of Alloys and Compounds.<\/i><\/p>\n<p>                                                                                Lithium-ion batteries are widely used for household <a href=\"https:\/\/buradabiliyorum.com\/en\/category\/download-scripts-themes-apps\/\" data-internallinksmanager029f6b8e52c=\"9\" title=\"Download Scripts &amp; Themes &amp; Apps\" target=\"_blank\" rel=\"noopener\">app<\/a>liances from smartphones to electric vehicles. The charge-discharge cycle in such battery is provided by the movement of lithium ions between two electrodes\u2014from a negatively charged anode to a positively charged cathode.<\/p>\n<p>The scope of application of lithium-ion batteries is constantly expanding, but at the same time, according to the scientists, their capacity is still limited by the properties of graphite\u2014the main anode material. Scientists from NUST MISIS managed to obtain a new material for anodes that can provide a significant increase in capacity and extend battery service life.<\/p>\n<p>&#8220;Porous nanostructured microspheres with the composition Cu<sub>0.4<\/sub>Zn<sub>0.6<\/sub>Fe<sub>2<\/sub>O<sub>4<\/sub>, that we have extracted, used as anode material provide three times higher capacity than the batteries existing on market. Besides, it allows for an increase in the number of charge-discharge cycles by 5 times compared to other promising alternatives to graphite. This improvement is achieved due to a synergistic effect with a combination of a special nanostructure and the composition of used elements,&#8221; Evgeny Kolesnikov, an assistant at the Department of Functional Nanosystems and High-Temperature Materials, NUST MISIS said.<\/p>\n<div class=\"article-gallery lightGallery\">\n<div data-thumb=\"https:\/\/scx1.b-cdn.net\/csz\/news\/tmb\/2021\/materialfrom.jpg\" data-src=\"https:\/\/scx2.b-cdn.net\/gfx\/news\/hires\/2021\/materialfrom.jpg\" data-sub-html=\"Evgeny Kolesnikov, an assistant at the Department of Functional Nanosystems and High-Temperature Materials, NUST MISIS. Credit: Sergey Gnuskov\/NUST MISIS\">\n<figure class=\"article-img text-center\"><img decoding=\"async\" src=\"https:\/\/scx1.b-cdn.net\/csz\/news\/800a\/2021\/materialfrom.jpg\" alt=\"Material from Russia will triple the capacity of lithium-ion batteries\"\/><figcaption class=\"text-left text-darken text-truncate text-low-up mt-3\">\n                Evgeny Kolesnikov, an assistant at the Department of Functional Nanosystems and High-Temperature Materials, NUST MISIS. Credit: Sergey Gnuskov\/NUST MISIS<br \/>\n            <\/figcaption><\/figure>\n<\/div>\n<\/div>\n<p>The synthesis of the final material happens via a one-step process without inter<a href=\"https:\/\/buradabiliyorum.com\/en\/category\/social-mediaa\/\" data-internallinksmanager029f6b8e52c=\"1\" title=\"Social Media\" target=\"_blank\" rel=\"noopener\">media<\/a>te stages due to the use of the spray-pyrolysis method. As the scientists explained, aqueous solution with ions of special metals is converted into fog with the help of ultrasound, and then water is evaporated at temperatures up to 1200 \u00b0 C with decomposition of the original metal salts. As the result, micron or submicron spheres with the porosity, that is required to operate in a lithium-ion system, are extracted.\n                                                                                                                        <\/p>\n<hr\/>\n<div class=\"article-main__explore my-4 d-print-none\">\n<p>                                            How short circuits in lithium metal batteries can be prevented\n                                        <\/p><\/div>\n<hr class=\"mb-4\"\/>\n<div class=\"article-main__more p-4\">\n                                                                                                <strong>More information:<\/strong><br \/>\n                                                Gopalu Karunakaran et al, Hollow-structured Cu<sub>0.4<\/sub>Zn<sub>0.6<\/sub>Fe<sub>2<\/sub>O<sub>4<\/sub> as a novel negative electrode material for high-performance lithium-ion batteries, <i>Journal of Alloys and Compounds<\/i> (2021).  <a rel=\"nofollow noopener\" target=\"_blank\" data-doi=\"1\" href=\"http:\/\/dx.doi.org\/10.1016\/j.jallcom.2021.158769\">DOI: 10.1016\/j.jallcom.2021.158769<\/a><\/p><\/div>\n<p>                                                Provided by<br \/>\n                                                                                                    National University of Science and Technology MISIS<\/p>\n<p>                                        <!-- print only --><\/p>\n<div class=\"d-none d-print-block\">\n<p>                                                 <strong>Citation<\/strong>:<br \/>\n                                                 New material will triple the capacity of lithium-ion batteries (2021, March 10)<br \/>\n                                                 retrieved 10 March 2021<br \/>\n                                                 from https:\/\/techxplore.com\/<a href=\"https:\/\/buradabiliyorum.com\/en\/category\/news\/\" data-internallinksmanager029f6b8e52c=\"2\" title=\"News\" target=\"_blank\" rel=\"noopener\">news<\/a>\/2021-03-material-triple-capacity-lithium-ion-batteries.html<\/p>\n<p>                                            This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no<br \/>\n                                            part may be reproduced without the written permission. The content is provided for information purposes only.<\/p><\/div>\n<\/p><\/div>\n<p><script id=\"facebook-jssdk\" async=\"\" src=\"https:\/\/connect.facebook.net\/en_US\/sdk.js\"><\/script><\/p>\n<blockquote><p><strong><span style=\"color: #ff6600;\">If you liked the article, do not forget to share it with your friends. 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According to the researchers, they have&#8230;<\/p>\n","protected":false},"author":1,"featured_media":199312,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"fifu_image_url":"https:\/\/scx2.b-cdn.net\/gfx\/news\/2021\/newmaterialw.jpg","fifu_image_alt":"","footnotes":""},"categories":[16],"tags":[],"class_list":["post-199311","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-sciencee"],"_links":{"self":[{"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/posts\/199311","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/comments?post=199311"}],"version-history":[{"count":0,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/posts\/199311\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/media\/199312"}],"wp:attachment":[{"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/media?parent=199311"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/categories?post=199311"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/buradabiliyorum.com\/en\/wp-json\/wp\/v2\/tags?post=199311"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}