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通过阳离子交换制备 A–B–A 型杂交纳米线。

Hybrid A–B–A type nanowires through cation exchange.

机构信息

DST Unit of Nanoscience, Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600 036, India.

出版信息

Nanoscale. 2011 Nov;3(11):4840-7. doi: 10.1039/c1nr11124h.

Abstract

Hybrid A–B–A type nanowires (NWs) with Ag5Te3–HgTe–Ag5Te3 composition have been created by the reaction of Hg2+ with Ag2Te NWs. The NW morphology of Ag2Te is preserved upon reaction with minor changes and the two separate phases formed are spatially separated within the same NW. The reaction of Hg2+ with Ag2Te NWs was monitored at different concentrations and the reactivity was attributed to cationic exchange depending on solubility products. Hybrid NWs were formed by partial cation exchange only at low concentrations (below 50 ppm) resulting in Ag5Te3 and HgTe within the same NW. However, at high concentrations (above 100 ppm), the HgTe phase alone was formed. These studies have been extended to other metal ions such as Pb2+, Cd2+, and Zn2+ whose reactivity towards Ag2Te NWs is different from that of Hg2+. These ions form a passivating Te oxide layer upon reaction with other metal ions. The mechanism of reactivity of Hg2+ is explained on the basis of free energy of formation of the ionic solid. Phase transition of Hg2+-reacted NWs occurs at a lower temperature than the parent (Ag2Te NWs) and other metal ions-reacted Ag2Te NWs. Details of the process were elucidated using microscopic and spectroscopic investigations. The physical and chemical properties of the individual components within a NW are expected to provide a novel functionality to the metal chalcogenide systems.

摘要

Ag5Te3–HgTe–Ag5Te3 组成的 A–B–A 型混合纳米线 (NW) 是通过 Hg2+ 与 Ag2Te NW 的反应生成的。Ag2Te NW 的 NW 形态在反应后得以保留,仅有轻微变化,并且形成的两个独立相在同一 NW 内空间分离。Hg2+ 与 Ag2Te NW 的反应在不同浓度下进行监测,反应活性归因于阳离子交换,这取决于溶解度积。只有在低浓度(低于 50 ppm)下,才会发生部分阳离子交换,形成同一 NW 内的 Ag5Te3 和 HgTe,从而形成混合 NW。然而,在高浓度(高于 100 ppm)下,仅形成 HgTe 相。这些研究已经扩展到其他金属离子,如 Pb2+、Cd2+ 和 Zn2+,它们与 Ag2Te NW 的反应活性与 Hg2+ 不同。这些离子在与其他金属离子反应时会形成钝化的 Te 氧化物层。Hg2+ 的反应活性机制是基于离子固体的形成自由能来解释的。与母体(Ag2Te NWs)和其他金属离子反应的 Ag2Te NWs 相比,Hg2+ 反应的 NWs 的相变发生在较低的温度下。使用微观和光谱研究阐明了该过程的细节。NW 内各个组件的物理和化学性质有望为金属硫属化物系统提供新的功能。

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