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Shape control of cadmium hydroxides (Cd(OH)_2) sensitive to pH quenching depth and massive production of CdSe nanocrystals by their chemical transformation

机译:对pH猝灭深度敏感的氢氧化镉(Cd(OH)_2)的形状控制和通过化学转化大量生产CdSe纳米晶体

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This study demonstrates that the structure of cadmium hydroxides (Cd(OH)_2) precipitated from a basic cadmium nitrate solution can be finely controlled by adjusting the pH of the precursor solution. The synthesis process involves only pouring the saturated solution into pure water to quench the pH and the total process is finished within 30s. At a shallow pH quenching, the unstable nanoparticles turned into microparticles via a ripening process. Cd(OH)_2 was precipitated in the form of one-dimensional nanowires and then two-dimensional plates as the pH quenching was increased. At a large pH quenching, porous aggregates of Cd(OH)_2 were obtained due to the too fast precipitation. The ultrafine Cd(OH)_2 nanowires were readily transformed into CdSe chain-like nanocrystals. The transformation was quick and gave 100% yield, facilitating massive production of CdSe nanocrystals in an aqueous condition. The Cd(OH)_2 nanowires were directly grown on Si nanowires and transformed into CdSe chain-like nanocrystals, decorating the surface of each Si nanowire
机译:这项研究表明,可以通过调节前体溶液的pH值来精细控制从碱性硝酸镉溶液中沉淀出来的氢氧化镉(Cd(OH)_2)的结构。合成过程仅涉及将饱和溶液倒入纯水中以终止pH值,整个过程在30s内完成。在较浅的pH淬灭下,不稳定的纳米颗粒会通过熟化过程变成微粒。 Cd(OH)_2以一维纳米线的形式沉淀,然后随着pH猝灭的增加而形成二维平板。在大的pH淬灭下,由于沉淀太快而获得了Cd(OH)_2的多孔聚集体。超细Cd(OH)_2纳米线很容易转变为CdSe链状纳米晶体。该转化快速并且给出了100%的产率,从而促进了在水性条件下CdSe纳米晶体的大量生产。 Cd(OH)_2纳米线直接在Si纳米线上生长,并转变为CdSe链状纳米晶体,修饰了每条Si纳米线的表面

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