<span id="1njpv"><video id="1njpv"></video></span><th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"><noframes id="1njpv">
<progress id="1njpv"></progress>
<span id="1njpv"></span>
<th id="1njpv"><noframes id="1njpv"><th id="1njpv"></th>
<ruby id="1njpv"><noframes id="1njpv"><strike id="1njpv"></strike>
<th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"></span>
<strike id="1njpv"></strike>
<span id="1njpv"><noframes id="1njpv">
<th id="1njpv"><address id="1njpv"><th id="1njpv"></th></address></th><th id="1njpv"></th><th id="1njpv"></th> <th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"><video id="1njpv"></video></span><strike id="1njpv"></strike>

磷酸鐵鋰產品一覽表

查看詳情

納米磷酸鐵鋰N1&N3容量型

查看詳情

納米磷酸鐵鋰N2低溫倍率型

查看詳情

高壓實LFP系列

查看詳情

核心技術

查看詳情

產品優勢

查看詳情

產品納米磷酸鐵鋰在2013年被科技部評為“ 國家重點新產品”。


特點:全球量產粒徑最小、克容量大、倍率性能高、自放電性能強、低溫性能好等


技術基礎-磷酸鐵鋰的結構及充放電原理


   
       (磷酸鐵鋰的橄欖石結構奠定了安全、循環的基礎)



技術基礎-樂能納米磷酸鐵鋰的基因優勢

微米級磷酸鐵鋰的鋰離子擴散和電子遷移因顆粒的原始粒徑大,造成低溫、倍率差


樂能納米級磷酸鐵鋰的鋰離子擴散和電子遷移因顆粒的原始粒徑小,使低溫、倍率性能優秀


技術基礎-國際國內磷酸鐵鋰原始粒徑對比


技術基礎-使用樂能材料的鋰電池優勢

技術基礎-磁分選技術

<span id="1njpv"><video id="1njpv"></video></span><th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"><noframes id="1njpv">
<progress id="1njpv"></progress>
<span id="1njpv"></span>
<th id="1njpv"><noframes id="1njpv"><th id="1njpv"></th>
<ruby id="1njpv"><noframes id="1njpv"><strike id="1njpv"></strike>
<th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"></span>
<strike id="1njpv"></strike>
<span id="1njpv"><noframes id="1njpv">
<th id="1njpv"><address id="1njpv"><th id="1njpv"></th></address></th><th id="1njpv"></th><th id="1njpv"></th> <th id="1njpv"><noframes id="1njpv"><span id="1njpv"></span>
<span id="1njpv"><video id="1njpv"></video></span><strike id="1njpv"></strike>
草草视频