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首页> 外文期刊>Nanoscale >Formation of core-shell-structured Zn2SnO4-carbon microspheres with superior electrochemical properties by one-pot spray pyrolysis
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Formation of core-shell-structured Zn2SnO4-carbon microspheres with superior electrochemical properties by one-pot spray pyrolysis

机译:形成core-shell-structured Zn2SnO4-carbon微球具有优异的电化学属性,喷雾热解法

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摘要

Core-shell structured Zn2SnO4-carbon microspheres with different carbon contents are prepared by one-pot spray pyrolysis without any further heating process. A Zn2SnO4-carbon composite microsphere is prepared from one droplet containing Zn and Sn salts and polyvinylpyrrolidone (PVP). Melted PVP moves to the outside of the composite microsphere during the drying stage of the droplet. In addition, melting of the phase separated metal salts forms the dense core. Carbonization of the phase separated PVP forms the textured and porous thick carbon shell. The discharge capacities of the core-shell structured Zn2SnO4-carbon microspheres for the 2nd and 120th cycles at a current density of 1 A g(-1) are 864 and 770 mA h g(-1), respectively. However, the discharge capacities of the bare Zn2SnO4 microspheres prepared by the same process without PVP for the 2nd and 120th cycles are 1106 and 81 mA h g(-1), respectively. The stable and reversible discharge capacities of the Zn2SnO4-carbon composite microspheres prepared from the spray solution with 15 g PVP decrease from 894 to 528 mA h g(-1) as current density increases from 0.5 to 5 A g(-1).
机译:核壳结构Zn2SnO4-carbon微球不同碳内容准备锅没有任何进一步的喷雾热解法加热过程。微球是准备从一个滴含有锌和锡盐和聚乙烯吡咯烷酮(PVP)。复合微球的外面的干燥阶段液滴。融化的相分离金属盐形式浓密的核心。分离PVP形成纹理和多孔厚碳壳。核壳结构Zn2SnO4-carbon微球第二届和120周期的电流密度1 g(1)马是864和770 h g (1),分别。的裸Zn2SnO4微球的准备同样的过程没有PVP为第二和第120位周期是1106年和81年马h g(1),分别。的稳定和可逆放电能力Zn2SnO4-carbon复合微球准备从喷淋溶液15 g PVP从894年到528年减少马h g(1)电流密度增加从0.5到5 g(1)。

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