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Structure-Enhanced Mechanically Robust Graphite Foam with Ultrahigh MnO2 Loading for Supercapacitors

机译:结构增强的机械鲁棒石墨泡沫用于超级电容器的超高MnO2负荷

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摘要

With the fast bloom of flexible electronics and green vehicles, it is vitally important to rationally design and facilely construct customized functional materials with excellent mechanical properties as well as high electrochemical performance. Herein, by utilizing two modern industrial techniques, digital light processing (DLP) and chemical vapor deposition (CVD), a unique 3D hollow graphite foam (HGF) is demonstrated, which shows a periodic porous structure and robust mechanical properties. Finite element analysis (FEA) results confirm that the properly designed gyroidal porous structure provides a uniform stress area and mitigates potential structural failure caused by stress concentrations. A typical HGF can show a high Young's modulus of 3.18 MPa at a low density of 48.2 mg cm−3. The porous HGF is further covered by active MnO2 material with a high mass loading of 28.2 mg cm−2 (141 mg cm−3), and the MnO2/HGF electrode still achieves a satisfactory specific capacitance of 260 F g−1, corresponding to a high areal capacitance of 7.35 F cm−2 and a high volumetric capacitance of 36.75 F cm−3. Furthermore, the assembled quasi-solid-state asymmetric supercapacitor also shows remarkable mechanical properties as well as electrochemical performance.
机译:随着柔性电子产品和绿色汽车的快速绽放,它对合理设计和易于构建定制功能材料具有优异的机械性能以及高电化学性能,这是至关重要的。这里,通过利用两种现代工业技术,数字光处理(DLP)和化学气相沉积(CVD),对唯一的3D中空石墨泡沫(HGF)进行说明,其表示周期性的多孔结构和鲁棒的机械性能。有限元分析(FEA)结果证实正确设计的陀尼逸孔结构提供均匀的应力区域和减轻由应力浓度引起的潜在结构失败。典型的HGF可以以48.2mg cm-3的低密度显示3.18MPa的高杨氏模量。多孔HGF进一步被活性MNO2材料覆盖,具有28.2mg CM-2(141mg CM-3)的高质量负载,MNO2 / HGF电极仍然达到260V-1的令人满意的特定电容,对应于高面积电容为7.35 f cm-2和36.75 f cm-3的高容量电容。此外,组装的准固态不对称超级电容器还显示出显着的机械性能以及电化学性能。

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