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<oembed><version>1.0</version><provider_name>BATTERIETAGUNG 2022</provider_name><provider_url>https://2022.battery-power.eu/en/</provider_url><title>Modelling degradation of nickel-rich cathodes induced by phase transition - BATTERIETAGUNG 2022</title><type>rich</type><width>600</width><height>338</height><html>&lt;blockquote class="wp-embedded-content" data-secret="tcjHukFSDW"&gt;&lt;a href="https://2022.battery-power.eu/en/poster2/1739/"&gt;Modelling degradation of nickel-rich cathodes induced by phase transition&lt;/a&gt;&lt;/blockquote&gt;&lt;iframe sandbox="allow-scripts" security="restricted" src="https://2022.battery-power.eu/en/poster2/1739/embed/#?secret=tcjHukFSDW" width="600" height="338" title="&#x201C;Modelling degradation of nickel-rich cathodes induced by phase transition&#x201D; &#x2014; BATTERIETAGUNG 2022" data-secret="tcjHukFSDW" frameborder="0" marginwidth="0" marginheight="0" scrolling="no" class="wp-embedded-content"&gt;&lt;/iframe&gt;&lt;script&gt;
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</html><description>Nickel-rich positive electrodes (e.g., NMC811) are becoming popular thanks to their high energy density and good rate capability. However, their layered structures are prone to phase transitions to disordered spinel and rock-salt structures when a large fraction of lithium diffuses out, leading to capacity fade and electrode degradation. To model this type of degradation, we [&hellip;]</description></oembed>
