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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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3.1.1.4.1 Leading atom of R: Carbon,anoparticle clusters/rGO papers via a facile hydrothermal route and electrochemical reduction. The hybrid structure gave rise to the high electrical conductivity and structural flexibility. Systematic electrochemical characterization are carried out to understand the synergic effect of the Fe.O. nan
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Magnetic Exchange Force Microscopy,ances than symmetric or non-flexible supercapacitors. This thesis focuses on the selection, design and synthesis of the suitable candidates for both positive and negative electrode materials in flexible ASCs.
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3.1.1.4.1 Leading atom of R: Carbon,Mesoporous carbons doped with different amounts of nitrogen are developed via a soft-templated hydrothermal route. Tuneable porosity and electrical conductivity is achieved through varying the amount of N-doping level, which helps to understand the effect of N-doping level on the electrichemical behavior.
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Experimental Section,This chapter describes the materials, experimental methodologies, and characterization techniques used in this thesis. Chemicals involved in all experiments are introduced in Sect. .. Materials synthesis methods are described in Sect. ., followed by the characterization techniques presented in Sect. ..
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Improving the Surface Area and Loading Mass of MnOx Based Electrode Materials,A new bilayer structure for the MnOx growing on Ni foam have been developed, aimed to improve the surface area and loading mass of the free standing type of MnOx based supercapacitor electrode materials. As such, high specific capacitance is obtained with much higher mass loading and improved surface area.
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