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kielwochen

铁杆木虫 (正式写手)

[交流] New article on Advanced Materials on Rational Design of ALD LFP 已有2人参与

A new insight into the structural control of LFP via ALD for advanced Performance.
A LiFePO 4 /CNT nanocomposite has been successfully synthesized using the ALD technique by a combination
of Fe 2 O 3 , PO x , and Li 2 O subcycles. The annealed LiFePO 4 / CNTs exhibited exceptional battery performance as a cathode
material, including excellent rate capability, high power density, and long lifetime. These advantages make the LiFePO 4 /
CNT nanocomposite a competitive cathode material for the next generation of high-powered LIBs. Successful development
of ALD process for LiFePO 4 promises it tremendous potential in 3D all-solid-state batteries. Moreover, this
ALD process allows coating of an ultrathin layer of LiFePO 4 on LiMnPO 4 to improve the carbon coating on the latter by taking
advantage of the catalytic reaction of Fe with C, thus enhancing its battery performance. In addition, this work establishes
an suitable technique to customize LiFePO 4 model samples for fundamental studies, owing to its excellent controllability
over the crystallinity, thickness, composition, and morphology of LiFePO 4 . The ALD strategy reported herein could
also be extended to fabricate the other members of LiMPO 4 (M = Mn, Co, Ni), and thus paves a new way to synthesize
complex cathode materials in a highly controllable fashion for rechargeable lithium batteries.New article on Advanced Materials on Rational Design of ALD LFP
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0.8

顶一下,感谢分享!
2楼2014-10-02 21:32:08
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蜗牛梦

木虫 (著名写手)

0.8

顶一下,感谢分享!
3楼2014-10-03 09:43:42
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蜗牛梦

木虫 (著名写手)

膜拜!……孙老师的文章,有幸和孙老师合过影……
蜗牛,为梦想而活!
4楼2014-10-03 09:47:43
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0.8

顶一下,感谢分享!
5楼2014-10-03 09:54:34
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xmdxx1182

金虫 (正式写手)


小木虫: 金币+0.5, 给个红包,谢谢回帖
简单读了一下,有个很大的问题。活性材料面密度太低了,1.5毫克乘以18%的磷酸铁锂。而且测试结果压根没有体现用ALD的好处
6楼2014-10-04 20:07:15
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suchscience

木虫 (正式写手)


小木虫: 金币+0.5, 给个红包,谢谢回帖
ALD的用处恐怕就是把纳米级别的颗粒弄到CNT上,保证烧结处理后能变为LFP。
7楼2014-10-06 09:38:33
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