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Evolution of dealloying induced strain in nanoporous gold crystals

机译:脱合金诱导菌株的进化纳米多孔金水晶

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We studied the evolution of dealloying-induced strain along the {111} in a Ag-Au nano-crystal in situ, during formation of nanoporous gold at the initial stage of dealloying using Bragg coherent X-ray diffractive imaging. The strain magnitude with maximum probability in the crystal doubled in 10 s of dealloying. Although formation of nano-pores just began at the surface, the greatest strain is located 60-80 nm deep within the crystal. Dealloying induced a compressive strain in this region, indicating volume shrinkage occurred during pore formation. The crystal interior showed a small tensile strain, which can be explained by tensile stresses induced by the non-dealloyed region upon the dealloyed region during volume reduction. A surface strain relaxation developed, attributed to atomic rearrangement during dealloying. This clearer understanding of the role of strain in the initial stages of formation of nanoporous gold by dealloying can be exploited for development of new sensors, battery electrodes, and materials for catalysis.
机译:我们研究dealloying-induced的进化应变沿{111}在Ag-Au纳米晶现场,在形成的纳米多孔金脱合金使用初期布拉格连贯x射线衍射成像。与晶体的最大概率翻倍十年代的脱合金。综述在表面,刚开始最大应变位于60 - 80 nm深处水晶。压力在这个区域,表明体积收缩发生在孔隙的形成。晶体内部显示一个小拉伸应变,这可以解释为拉伸应力吗在non-dealloyed引发的区域在肺减容dealloyed地区。表面应变弛豫发达,原因在脱合金原子重排。更清晰的了解压力的作用的初始阶段形成的纳米多孔黄金脱合金可以被利用的开发新的传感器、电池电极、和催化材料。

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