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Electrochemistry Studies of Hydrothermally Grown ZnO on 3D-Printed Graphene

机译:在3D打印石墨烯上水热生长ZnO的电化学研究

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A three-dimensional (3D) printer was utilised for the three-dimensional production of graphene-based pyramids and an efficient hydrothermal procedure for ZnO growth. In particular, the 3D-printed graphene pyramids were forwarded in Pyrex glass bottles with autoclavable screw caps filled with 50 mL of an aqueous solution of zinc nitrate hexahydrate and hexamethylenetetramine for 1 h at 95 °C; sufficient enough time to deposit well-dispersed nanoparticles. X-ray diffraction patterns were in accordance with a Raman analysis and presented the characteristic peaks of graphite along with those of wurtzite ZnO. Different positions on the sample were tested, confirming the uniform dispersion of ZnO on graphene pyramids. From the electrochemical studies, it was found that the charging and discharging processes are affected by the presence of ZnO, indicating one well-defined plateau for each process compared to the previously reported bare graphene pyramids. In total, the material shows a value of 325 mAh g ?1 , a capacitance retention factor of 92% after 5000 scans, and a coulombic efficiency of 100% for the first scan that drops to 85% for the 5000th scan. This excellent performance is the result of the effect of ZnO and graphene that combines two Li + accommodation sites, and the contribution of graphene pyramids, which provides more available sites to favor lithium storage capacity. Hence, this anode may be a promising electrode material for lithium-ion batteries.
机译:三维(3D)打印机用于基于石墨烯的金字塔的三维生产以及用于ZnO生长的有效水热程序。特别是,将3D打印的石墨烯金字塔在装有可高压灭菌的螺帽的Pyrex玻璃瓶中转发,该螺帽装有50 mL硝酸锌六水合物和六亚甲基四胺的水溶液,在95°C下放置1 h;足够的时间来沉积分散良好的纳米颗粒。 X射线衍射图谱符合拉曼分析,并给出了石墨和纤锌矿型ZnO的特征峰。测试了样品上不同的位置,确认了ZnO在石墨烯锥体上的均匀分散。从电化学研究中发现,ZnO的存在会影响充电和放电过程,与以前报道的裸石墨烯金字塔相比,表明每个过程都有一个明确定义的平稳期。总体而言,该材料的值为325 mAh g?1,经过5000次扫描后的电容保持率为92%,第一次扫描的库仑效率为100%,而在第5000次扫描时的库仑效率降至85%。出色的性能是ZnO和石墨烯结合了两个Li +调节位点和石墨烯金字塔的作用的结果,石墨烯金字塔提供了更多可用位点,有利于锂的储存能力。因此,该阳极可能是用于锂离子电池的有前途的电极材料。

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