{"id":117563,"date":"2023-10-24t11:54:49","date_gmt":"2023-10-24t15:54:49","guid":{"rendered":"\/\/www.g005e.com\/?p=117563"},"modified":"2024-08-27t17:00:53","modified_gmt":"2024-08-27t21:00:53","slug":"new-tech-could-let-evs-go-3000-miles-on-a-single-charge","status":"publish","type":"post","link":"\/\/www.g005e.com\/2023\/10\/24\/new-tech-could-let-evs-go-3000-miles-on-a-single-charge\/","title":{"rendered":"new tech could let evs go 3,000 miles on a single charge"},"content":{"rendered":"
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imagine driving across america and not stopping for gas. a substantial advancement in battery technology has been made in the quickly developing field of electric vehicles (evs), offering an unparalleled increase in energy storage capabilities. this finding couldn’t have come at a better moment, given the exponential rise the electric vehicle sector is currently experiencing.<\/span><\/p>\n more:<\/b> major websites blocking content from ai crawlers<\/a> | what is an heic file?<\/a> | bill gates behind next-generation nuclear plant<\/a> |\u00a0electronic skin that can sense touch will transform robotics<\/a> | four of today\u2019s new technologies that will be tomorrow\u2019s \u2018norm\u2019<\/a><\/span> the energy storage capacity of batteries can now be increased tenfold according to a ground-breaking method developed by researchers at\u00a0<\/span>the pohang university of science & technology<\/span><\/a> (postech). this invention could change the face of the entire electric vehicle market in addition to advancing battery technology. here’s how:<\/span><\/p>\n <\/p>\n the function of the anode in batteries<\/span><\/strong><\/p>\n the anode, a component in charge of storing energy during the charging stage and then discharging it when the battery is in use, is fundamental to how batteries work. graphite is currently the material of choice for anodes in most contemporary lithium batteries.<\/span><\/p>\n however, some substances, such as silicon, naturally have a far higher energy density than graphite, making them potentially more suitable for effective battery design. however, stabilizing a battery that makes use of a silicon anode has always been difficult. one of the main problems is that the internal chemical processes in the battery cause silicon to expand, endangering the stability and safety of the battery.<\/span><\/p>\n
\n<\/strong>\u00a0<\/strong>
\nby rick richardson
\ntechnology this week<\/em><\/p>\n
\nexclusively for pro members. <\/span><\/strong>log in here<\/a> or 2022世界杯足球排名 today<\/a>.<\/span><\/p><\/blockquote>\n