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首页> 外文期刊>Scientific reports. >Na-ion Storage Performances of FeSex and Fe2O3 Hollow Nanoparticles-Decorated Reduced Graphene Oxide Balls prepared by Nanoscale Kirkendall Diffusion Process
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Na-ion Storage Performances of FeSex and Fe2O3 Hollow Nanoparticles-Decorated Reduced Graphene Oxide Balls prepared by Nanoscale Kirkendall Diffusion Process

机译:FESEX和Fe2O3中空纳米粒子的Na离子储存性能 - 纳米级Kirkendall扩散工艺制备的装饰性氧化物氧化物球

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Uniquely structured FeSe(x)-reduced graphene oxide (rGO) composite powders, in which hollow FeSe(x) nanoparticles are uniformly distributed throughout the rGO matrix, were prepared by spray pyrolysis applying the nanoscale Kirkendall diffusion process. Iron oxide-rGO composite powders were transformed into FeSe(x)-rGO composite powders by a two-step post-treatment process. Metallic Fe nanocrystals formed during the first-step post-treatment process were transformed into hollow FeSe(x) nanoparticles during the selenization process. The FeSe(x)-rGO composite powders had mixed crystal structures of FeSe and FeSe2 phases. A rGO content of 33% was estimated from the TG analysis of the FeSe(x)-rGO composite powders. The FeSe(x)-rGO composite powders had superior sodium-ion storage properties compared to those of the Fe2O3-rGO composite powders with similar morphological characteristics. The discharge capacities of the FeSe(x)- and Fe2O3-rGO composite powders for the 200(th) cycle at a constant current density of 0.3?A g(-1) were 434 and 174?mA h g(-1), respectively. The FeSe(x)-rGO composite powders had a high discharge capacity of 311?mA h g(-1) for the 1000(th) cycle at a high current density of 1?A g(-1).
机译:唯一结构的FESE(X) - RORED的石墨烯氧化物(RGO)复合粉末,其中空心肥果(X)纳米颗粒在整个RGO基质中均匀分布,通过喷雾热解施加纳米级Kirkendall扩散方法来制备。将氧化铁-RGO复合粉末转化为FESE(X)-RGO复合粉末通过两步后处理。在硒化过程中,在第一步后处理过程中形成的金属Fe纳米晶体在第一步后处理过程中形成的中空FESE(X)纳米颗粒。 FESE(X)-RGO复合粉末具有FESE和FESE2相的混合晶体结构。从FESE(X)-RGO复合粉末的TG分析估计RGO含量为33%。与具有相似形态特征的Fe2O3-RGO复合粉末相比,FESE(X)-RGO复合粉末具有优异的钠离子储存性能。 FESE(X) - 和Fe2O3-RGO复合粉末的放电容量为200(TH)循环的恒定电流密度为0.3Ω·1℃,分别为434和174. mA Hg(-1) 。 FESE(X)-RGO复合粉末的高放电容量为311Ω,对于1000(TH)循环,高电流密度为1〜G(-1)。

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