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Highly transparent supercapacitors based on ZnO/MnO2 nanostructures

机译:高度透明的超级电容器的基础上

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摘要

The recent rapid development of transparent electronics, notably displays and control circuits, requires the development of highly transparent energy storage devices, such as supercapacitors. The devices reported to date utilize carbon-based electrodes for high performance, however at the cost of their low transparency around 50%, insufficient for real transparent devices. To overcome this obstacle, in this communication highly transparent supercapacitors were fabricated based on ZnO/MnO2 nanostructured electrodes. ZnO served as an intrinsically transparent skeleton for increasing the electrode surface, while MnO2 nanoparticles were applied for high capacitance. Two MnO2 synthesis routes were followed, based on the reaction of KMnO4 with Mn(Ac)(2) and PAH, leading to the synthesis of beta-MnO2 with minority beta-MnO2 nanoparticles and amorphous MnO2 with embedded beta-MnO2, respectively. The devices based on such electrodes showed high capacitances of 2.6 mF cm(-2) and 1.6 mF cm(-2), respectively, at a scan rate of 1 mV s(-1) and capacitances of 104 mu F cm-2 and 204 mu F cm(-2) at a very high rate of 1 V s(-1), not studied for transparent supercapacitors previously. Additionally, the Mn(Ac) 2 devices exhibited very high transparencies of 86% vs. air, far superior to other transparent energy storage devices reported with similar charge storage properties. This high device performance was achieved with a non-acidic LiCl gel electrolyte, reducing corrosion and handling risks associated with conventional highly concentrated acidic electrolytes, enabling applications in safe, wearable, transparent devices.
机译:最近快速发展的透明电子产品,特别是显示和控制电路,需要高度的发展透明的能量储存设备,例如超级电容器。利用高碳基电极性能,然而在他们的成本低透明度50%左右,真正的不足透明的设备。在这个高度透明的沟通超级电容器是捏造基于氧化锌/汇总纳米电极。本质上透明的骨架为增加电极表面,同时汇总纳米颗粒申请高电容。合成路线之后,基于反应的KMnO4 Mn (Ac)(2)和多环芳烃,领先与少数beta-MnO2的合成beta-MnO2纳米颗粒和无定形的汇总分别嵌入beta-MnO2。基于这样的电极显示高功放2.6 mF厘米(2)和(2)1.6 - mF厘米,分别1 mV s的扫描速率(1)和功放104亩cm-2和204μF厘米(2)非常高率1 V s(1),而不是研究了透明超级电容器。Mn (Ac) 2设备表现出非常高的与空气透明度86%,远优于其他透明的能源存储设备具有类似电荷存储属性。设备性能达到non-acidic氯化锂凝胶电解质,减少腐蚀和处理风险与传统有关高度集中的酸性电解质,使应用程序安全、可穿戴、透明设备。

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