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Titlebook: Nanoporous Metals for Advanced Energy Technologies; Yi Ding,Zhonghua Zhang Book 2016 Springer International Publishing Switzerland 2016 Mi

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Nanoporous Metals for Fuel Cell Applications,d upon further surface functionalization, NPG leaf-based electrocatalysts can demonstrate unique structural advantages that are crucial to fuel cell electrodes, such as high surface area, high electric conductivity, high durability, and high precious metal utilization. After the discussion of Pt–NPG
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Nanoporous Metals for Supercapacitor Applications,it the electron--proton transport and electrolyte permeation, giving rise to ultrahigh specific capacitance. The pseudo-capacitive materials can also be deposited on the nanoporous metals by surface oxidize/oxyhydroxide. The surface oxyhydroxide and the internal nanoporous metal framework form a hom
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Nanoporous Metals for Supercapacitor Applications,densities and can be fully discharged or charged in seconds which are suitable for large instantaneous current densities. The performance is highly dependent on the specific surface area and conductivity of the electrode materials. Nanoporous metals-based electrode materials with a large internal su
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Conclusions and Prospects,gulation of nanoporous metals, and their applications in energy conversion/storage fields. We also briefly introduce the potential applications of nanoporous metals in other energy-related fields like water splitting. Finally, prospects are put forward considering the formation mechanism, microstruc
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