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Homogenous incorporation of SnO_2 nanoparticles in carbon cryogels via the thermal decomposition of stannous sulfate and their enhanced lithium-ion intercalation properties

机译:通过硫酸亚锡的热分解将SnO_2纳米粒子均匀掺入碳冰晶中及其增强的锂离子嵌入性能

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摘要

An impregnation-calcination method based on the thermal decomposition of stannous sulfate is developed to prepare carbon cryogel-tin oxide nanocomposites with less impurity for anode materials of lithium-ion batteries. Structural characterization reveals that the tin oxide nanoparticles, arising from the decomposition of stannous sulfate, are homogeneously distributed inside the pores of carbon cryogels. The detail results demonstrate that carbon cryogels with large specific surface area, large porosity, and small mesopores are beneficial to the deposition of tin oxide nanoparticles. As a result, carbon cryogel-tin oxide nanocomposites with optimized structures show a discharge capacity of 590. mA. h/g after 50 cycles, much higher than that of either carbon cryogels, pure tin oxides or their mechanical mixture. The superior electrochemical properties of carbon cryogel-tin oxide nanocomposites could be attributed to their novel microstructures and the synergistic effects between carbon cryogels and tin oxide.
机译:提出了一种基于硫酸亚锡热分解的浸渍煅烧方法,以制备杂质更少的碳冻凝胶-氧化锡纳米复合材料作为锂离子电池负极材料。结构表征表明,由于硫酸亚锡的分解而产生的氧化锡纳米颗粒均匀地分布在碳冰晶格的孔内。详细结果表明,具有大的比表面积,大的孔隙率和小的中孔的碳晶格有利于氧化锡纳米颗粒的沉积。结果,具有优化结构的碳冷冻凝胶-氧化锡纳米复合材料的放电容量为590 mA。 50次循环后的h / g,远高于碳冰晶,纯氧化锡或它们的机械混合物。碳冷冻凝胶-氧化锡纳米复合材料的优异电化学性能可归因于其新颖的微观结构以及碳冷冻凝胶和氧化锡之间的协同作用。

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