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Nanoporous Metals for Advanced Energy Technologies by Yi Ding, Zhonghua Zhang

By Yi Ding, Zhonghua Zhang

This ebook covers the cutting-edge examine in nanoporous metals for capability functions in complex power fields, together with proton alternate membrane gas cells, Li batteries (Li ion, Li-S, and Li-O2), and supercapacitors. The similar structural layout and function of nanoporous metals in addition to attainable mechanisms and demanding situations are absolutely addressed. The formation mechanisms of nanoporous metals in the course of dealloying, the microstructures of nanoporous metals and characterization equipment, in addition to miscrostructural rules of nanoporous metals via alloy layout of precursors and floor diffusion keep an eye on also are lined intimately. this is often a terrific e-book for researchers, engineers, graduate scholars, and government/industry officials who're accountable for R&D investments and procedure relating to power technologies.

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Nanoporous Metals for Advanced Energy Technologies

This e-book covers the cutting-edge learn in nanoporous metals for strength functions in complex strength fields, together with proton trade membrane gasoline cells, Li batteries (Li ion, Li-S, and Li-O2), and supercapacitors. The comparable structural layout and function of nanoporous metals in addition to attainable mechanisms and demanding situations are absolutely addressed.

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RSC Adv 2(31):11820 44. Xu C, Liu Y, Hao Q, Duan H (2013) Nanoporous PdNi alloys as highly active and methanol-tolerant electrocatalysts towards oxygen reduction reaction. J Mater Chem A 1(43):13542 45. Xu C, Liu Y, Zhang H, Geng H (2013) A nanoporous PdCo alloy as a highly active electrocatalyst for the oxygen-reduction reaction and formic acid electrooxidation. Chem Asian J 8(11):2721–2728 46. Zhao D, Wang Z, Wang J, Xu C (2014) The nanoporous PdCr alloy as a nonenzymatic electrochemical sensor for hydrogen peroxide and glucose.

Recently, Wang et al. [121] have reported that NPG–polymer composite samples made from cm-sized nanoporous samples enable macroscopic tensile and four-point bending tests that show ductility, Fig. 21. Catalytic properties. Due to very high specific surface area and nanosized ligaments, NPMs show excellent catalytic properties for a series of important heterogeneous reactions. Zielasek et al. [122] first pointed out that NPG is a promising material for catalytic applications (CO oxidation). Almost at the same time, Xu et al.

Indians of pre-Columbian Central America had invented a depletion gilding technique for the coloration of castings prepared from copper–gold alloys (also referred to as tumbaga or tumbago), Fig. 2 [2]. Depletion gilding is such a process by which the surface of a dilute gold alloy becomes gold-enriched by the selective removal of the less noble component. At that time, the depletion gilding process involved by either the removal of Cu from the Cu–Au alloy surface in a corrosive solution, or the dissolution of Cu oxides which were formed by heating the Cu–Au alloys in air.

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