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Zinc diphosphide nanowires: bismuth nanocrystal-seeded growth and their use as high-capacity lithium ion battery anodes
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Zinc diphosphide nanowires: bismuth nanocrystal-seeded growth and their use as high-capacity lithium ion battery anodes

Jee-Yee Chen, Li-Chu Chin, Guo-An LiHsing-Yu Tuan
CrystEngComm, 卷.19(6), 頁碼.975-981
2017

摘要

Chemistry (all) Materials Science (all) Condensed Matter Physics
For the first time, binary lithium-reactive zinc diphosphide (ZnP 2 ) nanowires were synthesized via bismuth-seed growth at 400 °C via a solvothermal route. The synthesized ZnP 2 nanowires are single crystals with diameters ranging from 10 to 50 nm and have a precise orthorhombic structure without impurity phases. From SEM and HRTEM images, the lengths of the nanowires over several micrometers could be observed. The effect of reaction parameters, including temperature and seed to precursor ratio, on the quality of reaction products has been systematically investigated. We used ZnP 2 nanowires as an anode material for lithium batteries since ZnP 2 has a much higher theoretical capacity of 1581 mA h g -1 than that of commercial graphite (372 mA h g -1 ). The capacity of the first discharge cycle was 1415 mA h g -1 at 0.3C (1C = 1581 mA h g -1 ) with high Coulombic efficiency up to 89%. The discharge capacity was maintained at 1066 mA h g -1 after 500 cycles, showing good capacity retention and long lifespan. With these merits and excellent electrochemical performance, ZnP 2 nanowires clearly are a promising anode material for lithium ion batteries.

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