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Nanoporous Copper Dealloyed from A Nanocrystallized TiCu Alloy

机译:纳米晶化的TiCu合金脱合金的纳米多孔铜

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Nanoporous copper (NPC) was fabricated through dealloying nanocrystallized Ti_(50)Cu_(50) ribbon alloy under a free immersion condition in HF solutions at 25 ℃. Multimodal nanoporous structure was formed due to the presence of Ti_3Cu_4 phase, which was co-precipitated with Ti_2Cu during the heat treatment at T = 400 ℃ (T_g < T < T_x). The presence of multiphases in the starting material caused the different behavior in the evolution of nanoporosity. In 0.03 mol/L HF solution, the bimodal nanoporous copper with a pore size of 54 nm and 184 nm was obtained in different regions where the composition differed. The ligament scale lengths in two regions were confirmed to be 54 nm and 203 nm, respectively. In 0.13 mol/L HF solution, the difference in the pore size and phase separation became weak, accompanying with the evolution of larger pores and smaller ligaments. The residue after dealloying was confirmed to be fcc Cu, indicated by the presence of Cu (111), (200), (220) and (311) in XRD patterns and TEM selective area diffraction pattern. The microstructure of the starting materials for dealloying, such as intermetallic phases, played a key role in the formation of the final multimodal nanoporous structure.
机译:通过在25℃的HF溶液中自由浸入条件下对纳米晶化的Ti_(50)Cu_(50)带状合金进行脱合金制备了纳米孔铜(NPC)。 Ti_3Cu_4相的存在形成了多峰纳米孔结构,在T = 400℃(T_g

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