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TiN porous ceramics with excellent electrochemical properties prepared by freeze-drying and in-situ nitridation reaction

机译:通过冷冻干燥和原位氮化反应制备了具有优异电化学性能的TiN多孔陶瓷

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? 2022 Elsevier Ltd and Techna Group S.r.l.Porous ceramics have attracted extensive attention because of their high porosity, low thermal conductivity, large specific surface area and good corrosion resistance. In this work, TiN porous ceramics with high porosity are successfully prepared via the combination of freeze-drying and in-situ nitridation reaction method using Ti powder and chitosan as raw materials. The influence of the solid content of Ti powder, the concentration of chitosan/acetic acid solution and the nitridation temperature on the morphologies and physical properties of as-prepared TiN porous ceramics are fully investigated. The sample with high porosity of 92.8 and low bulk density of 0.27 g/cm3 can be obtained through optimal parameters (the solid content of Ti powder is 9.6 wt, the concentration of chitosan/acetic acid solution is 5 wt, and the nitridation temperature is 1473 K). Particular emphasize is that the as-prepared TiN porous ceramics can be used as sulfur host material for lithium-sulfur batteries (LSBs). Good rate performance and cycle stability of TiN/S electrodes are achieved by electrochemical performance tests. The initial discharge capacity of TiN/S electrodes is 778 mAh g?1 at 0.5C, and the capacity retention rate is 94 after 200 cycles.
机译:?2022 Elsevier Ltd和Techna Group S.r.l.多孔陶瓷因其高孔隙率、低导热系数、大比表面积和良好的耐腐蚀性而引起广泛关注。本工作以Ti粉体和壳聚糖为原料,采用冷冻干燥和原位氮化反应相结合的方法,成功制备了高孔隙率的TiN多孔陶瓷。充分研究了Ti粉体固含量、壳聚糖/乙酸溶液浓度和氮化温度对TiN多孔陶瓷形貌和物理性能的影响。通过最优参数(Ti粉体固含量为9.6 wt%,壳聚糖/乙酸溶液浓度为5 wt%,氮化温度为1473 K),可获得孔隙率高(92.8%)、堆积密度低(0.27 g/cm3)的样品。特别强调的是,制备的TiN多孔陶瓷可用作锂硫电池(LSB)的硫基体材料。通过电化学性能测试,TiN/S电极具有良好的倍率性能和循环稳定性。TiN/S电极在0.5C时的初始放电容量为778 mAh g?1,循环200次后容量保持率为94%。

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