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Titlebook: Carbon and Metal Oxides Based Nanomaterials for Flexible High Performance Asymmetric Supercapacitors; Yating Hu Book 2018 Springer Nature

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Carbon and Metal Oxides Based Nanomaterials for Flexible High Performance Asymmetric Supercapacitors
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Introduction,etric supercapacitor of high performance with manganese oxides/reduced graphene oxide as the positive electrode and iron oxide/reduced graphene oxide as the anode is successfully developed, delivering a high energy density of 0.056 Wh cm. at the corresponding power density of 0.32 W cm.. Several of
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2190-5053 lops a high-performance, flexible asymmetric supercapacitor with manganese oxides/reduced graphene oxide as the positive electrode and iron oxide/reduced graphene oxide as the anode, which delivers a high energy density of 0.056 Wh cm-3..978-981-13-4127-4978-981-10-8342-6Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Mn3O4 Nanomaterials with Controllable Morphology and Particle Sizes,e crystallite sizes for Mn.O. with the help of surfactant. These Mn.O. nanomaterials are then assembled with rGO sheets into a flexible hybrid paper. Their electrochemical performances are assessed in order to find out the optimal morphology of Mn.O. for flexible positive electrode application.
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Optimized Hybrid Mn3O4 Nanofiber/rGO Paper for High Performance Flexible ASCs, gel could then be easily blended with GO suspension and the hybrid Mn.O./rGO paper could be obtained. The electrochemically reduced hybrid paper shows much improved electrical conductivity while its mechanical flexibility is retained, made it optimal for application for flexible supercapacitor.
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978-981-13-4127-4Springer Nature Singapore Pte Ltd. 2018
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3.1.2.3.1 Leading atom of R: Carbon,ssues, such as the low energy density and reliability, need to be addressed, before they could be extended to a wide range of applications with much approved performance. Currently available material candidates for the electrodes all have their disadvantages, such as, a low specific capacitance for
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