Advanced Energy Technology

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Nanoporous Metals for Supercapacitor Applications. Nanoporous Metals for Li Battery Applications. Conclusions and Prospects. Back Matter Pages About this book Introduction This book covers the state-of-the-art research in nanoporous metals for potential applications in advanced energy fields, including proton exchange membrane fuel cells, Li batteries Li ion, Li-S, and Li-O2 , and supercapacitors.

The related structural design and performance of nanoporous metals as well as possible mechanisms and challenges are fully addressed.

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The formation mechanisms of nanoporous metals during dealloying, the microstructures of nanoporous metals and characterization methods, as well as miscrostructural regulation of nanoporous metals through alloy design of precursors and surface diffusion control are also covered in detail. Buy options. Perovskite Optoelectronics Edited by: Subodh G.

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    Energy Technology. Editor-in-Chief: John Uhlrich. Online ISSN: KGaA, Weinheim.

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    On the Cover Skip slideshow. A high dielectric property and large energy density is obtained in a uniaxial stretching poly vinylidene fluoride-chlorotrifluoroethylene nanocomposite incorporated with few-layer graphene, which is exfoliated in low-boiling organic solvents with the assistance of a fluoro hyperbranched polyethylenegraft-poly trifluoroethyl methacrylate copolymer. The nanocomposite exhibits promising energy storage capabilities.


    More details can be found in article number by Yunfei Zhu, Lixin Xu, and co-workers. A shape- and size-controlled, low-cost, eco-friendly solar-absorber material is urgently desired for solar-driven interface steam generators SISGs , where the macro-shape plays an important role in energy regulation.

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    More details can be found in article number by Chengbing Wang, Meng An, and co-workers. A flexible membraneless wire-shaped fuel cell is fabricated by using biscrolled carbon nanotube yarns as electrodes, and green H 2 O 2 as a fuel. It shows a high open-circuit potential of 0.

    More details can be found in article number by Ningyi Yuan, Jianning Ding, and co-workers.