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Dispersed and size-selected WO_3 nanoparticles in carbon aerogel for supercapacitor applications

机译:碳气凝胶中分散的和按大小选择的WO_3纳米颗粒,用于超级电容器应用

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In this study, the dispersed and size-selected WO3 nanoparticles have been successfully incorporated into carbon aerogel (CA), a conductive, mesoporous hosting template, via solvent-immersion process and subsequent calcination treatment. Size selecting of WO3 in CA is achieved via a facile route of concentration adjustment of immersion solution. Meanwhile, the strong dependence of capacitive performance on size distribution and dispersing/aggregate condition of WO3 nanoparticles in CA is observed. Also the dependence of the specific capacitance of WO3 in CA on WO3 content and on its mean size is presented by comparison with the reported studies. Consequently, the mean size of WO3 nanoparticles in CA is reduced to 7.3 nm and the range of size distribution of those is confined to 1-25 nm with well-dispersing features by applying optimal processing parameters. Such optimized WO3 nanoparticles in CA exhibit a maximum specific capacitance of 1055 F g(-1) at 5 mV s(-1), which is much higher than as-reported capacitance values achieved with WO3 as the electrodes up to now for all we know. This study offers a new method to achieve high capacitance by compositing size-selected metal oxide nanoparticles with cheap high-conductivity mesoporous template. (c) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,通过溶剂浸没工艺和随后的煅烧处理,已将分散且按大小选择的WO3纳米颗粒成功地掺入了碳气凝胶(CA)(一种导电的介孔宿主模板)中。 CA中WO3的尺寸选择是通过调整浸液浓度的简便途径来实现的。同时,观察到电容器性能对CA中WO 3纳米颗粒的尺寸分布和分散/聚集条件的强烈依赖性。通过与已报道的研究进行比较,还提出了CA中WO 3的比电容对WO 3含量及其平均尺寸的依赖性。因此,通过应用最佳工艺参数,CA中WO3纳米颗粒的平均尺寸减小到7.3 nm,并且具有良好分散特性,将它们的尺寸分布范围限制在1-25 nm。在CA中,这种经过优化的WO3纳米粒子在5 mV s(-1)时显示出1055 F g(-1)的最大比电容,这比迄今为止以WO3作为电极实现的报告电容值高得多。知道。这项研究提供了一种通过将尺寸选择的金属氧化物纳米粒子与廉价的高电导率介孔模板复合来获得高电容的新方法。 (c)2017 Elsevier Ltd.保留所有权利。

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