From Phosphorus Nanorods/C To Yolk-Shell P@Hollow C For Potassium-Ion Batteries: High Capacity With Stable Cycling Performance

JOURNAL OF MATERIALS CHEMISTRY A(2020)

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摘要
A thin hollow C (HC) was synthesized to host a high phosphorus (P) loading of 75 wt%, forming a P@HC yolk/shell structure, which delivered a reversible capacity of 841 mA h g(-1), with excellent rate capability and stable cycling performance. P vapor concentration was found to be critical to the formation of P@HC or the P nanorod (PNR)/C composite. At a very high concentration of P vapor, well-crystallized PNRs were formed, which, however helped to identify the potassiation mechanism.
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