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Facile Chemical Synthesis and Potential Supercapattery Energy Storage Applicationof Hydrangea-type Bi2MoO6

机译:简便的化学合成和潜在的超级电池储能应用绣球花型Bi2MoO6

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摘要

Soft chemical synthesis is used to obtain a hydrangea-type bismuth molybdate (Bi2MoO6) supercapattery electrode that demonstrates considerable energy/power density and cycling life. Structure and morphology studies, initially, reveal a phase-pure polycrystalline and hydrangea-type surface appearance for Bi2MoO6, which upon testing in an electrochemical energy storage system displays supercapattery behavior, a combination of a supercapacitor and a battery. From the power law, an applied-potential-dependent charge storage mechanism is established for the Bi2MoO6 electrode material. A Trasatti plot evidences the presence of inner and outer surface charges. The hydrangea-type Bi2MoO6 electrode demonstrates a specific capacitance of 485 F g–1 at 5 A g–1 and a stability of 82% over 5000 cycles. An assembled symmetric supercapattery with a Bi2MoO6//Bi2MoO6 configuration demonstrates energy and power densities of 45.6 W h kg–1 and 989 W kg–1, respectively. A demonstration elucidating the lighting up of three light-emitting diodes, connected in series, by the symmetric supercapattery signifies the practical potentialityof the as-synthesized hydrangea-type Bi2MoO6 electrode in energy storage devices.
机译:软化学合成用于获得绣球花型钼酸铋(Bi2MoO6)超级电池电极,该电极表现出可观的能量/功率密度和循环寿命。最初,结构和形态研究揭示了Bi2MoO6的纯相多晶和八仙花型表面外观,经电化学储能系统测试,该表面表现出超级电池性能,超级电容器和电池的组合。根据幂定律,为Bi2MoO6电极材料建立了依赖于电势的电荷存储机制。 Trasatti图证明存在内表面电荷和外表面电荷。绣球花型Bi2MoO6电极在5 A g -1 时的比电容为485 F g –1 ,在5000次循环中的稳定性为82%。具有Bi2MoO6 // Bi2MoO6配置的对称对称超级电池组装而成,其能量和功率密度分别为45.6 W h kg -1 和989 W kg -1 。通过对称超级电容器阐明串联连接的三个发光二极管点亮的演示表明了实际的潜力合成的绣球型Bi2MoO6电极在储能装置中的应用

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