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Escape from the destruction of the galvanic replacement reaction for solid → hollow → solid conversion process in one pot reaction

机译:逃离电的毁灭置换反应的固体→空心→固体在一锅反应转换过程

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摘要

Based on the difference in the redox potentials between two metal species, the galvanic replacement reaction is known to create an irreversible process to generate hollow nanostructures in a wide range of shapes. In the context of galvanic replacement reaction, continuing etching leads to the general collapse of the hollow structures because of the excess amount of oxidizing agent. We demonstrate the growth of solid nanostructures from a hollow frame-like architecture in the course of a galvanic replacement reaction without any morphology destruction. We report the successful composition transformation of solid Ag with a wide range of shapes, such as plate, decahedron, rod, prism, sphere, and foil, from as thin as <10 nm up to 5 μm and with an area of ~4 mm~2, to their solid Au counterparts using straightforward chemical reactions. The successful conversion process relies on a decrease in the reduction rate of the metallic precursor to initiate dissolution of Ag in the first stage (a galvanic replacement reaction), then a subsequent backfilling of Au into the hollowed-out structures. Cetyltrimethylammonium bromide (CTAB) surfactant, a key parameter, interacts with metal salt precursor to form a complex species that retards metal reduction. In addition, we demonstrate conversion of solid nano-Ag to solid nano-Pd as well as of Cu foil (10 urn thick) to shiny Au foil.
机译:基于氧化还原势的差异两种金属之间的电置换反应创建一个不可逆过程产生空洞纳米结构在各种各样的形状。电置换反应,持续的腐蚀会导致崩溃因为过度的空心结构数量的氧化剂。增长的固体从空心纳米结构这种结构体系结构课程的没有任何电置换反应形态的破坏。组合转换的固体Ag)各种各样的形状,如板、十面体,杆、棱镜、球体和烘托,从薄如< 10海里5μm和面积~ 2 ~ 4毫米,固体盟同行使用简单化学反应。减少过程依赖于减少金属前体启动的速度解散Ag)在第一阶段(电置换反应),那么后续的回填的非盟镂空结构。表面活性剂、关键参数与金属相互作用盐前体形成一个复杂的物种减少阻碍金属。展示固体nano-Ag转换成固体nano-Pd以及铜铝箔(10缸厚)闪亮的盟箔。

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