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Flexible and transparent supercapacitor based on ultrathin Au/graphene composite electrodes

机译:基于超薄金/石墨烯复合电极的柔性透明超级电容器

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Large-area monolayer graphene by chemical vapor deposition as electrode in electronic devices always suffers from shortages of low conductivity and high contact resistance. In this work, we demonstrate a composite electrode by depositing a continuous and homogeneous ultrathin 7-nm Au film on monolayer graphene with low average sheet resistance of 24.6 Omega/square and high transmittance of 74.6% at 520 nm. The excellent properties of the composite electrode are attributed to the suppressed Au Volmer-Weber growth mode of the ultrathin Au film by the organized hexagonal carbon lattices of graphene. Rigid supercapacitor based on the composite electrode exhibits a capacitance of 81.5 mu F/cm(2) at the scan rate of 0.1 V/s, which is 17 times higher than the device based on monolayer graphene. Flexible supercapacitor based on the composite electrode can be bending at curvature radius of 2 mm and with slight performance decrease over 1800 bending cycles.
机译:通过化学气相沉积作为电子器件中的电极的大面积单层石墨烯总是遭受低电导率和高接触电阻的短缺。在这项工作中,我们展示了一种通过在单层石墨烯上沉积连续且均匀的7nm超薄Au膜来形成复合电极的方法,该复合膜的平均薄层电阻低,为24.6 Omega / square,在520 nm处的透射率为74.6%,透光率高。复合电极的优异性能归因于石墨烯的有组织六角碳晶格抑制了超薄金膜的Au Volmer-Weber生长模式。基于复合电极的刚性超级电容器在0.1 V / s的扫描速率下显示出81.5μF/ cm(2)的电容,这比基于单层石墨烯的器件高17倍。基于复合电极的柔性超级电容器可以在2 mm的曲率半径下弯曲,并且在1800个弯曲周期内性能会略有下降。

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