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A versatile strategy to the selective synthesis of Cu nanocrystals and the in situ conversion to CuRu nanotubes

机译:一种多用途的选择性合成策略铜纳米晶体和原位转换

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Compared with Ag, Au, Pt and Pd, the synthesis of Cu nanocrystals that exhibit well-defined structures and surface properties has achieved limited success. Herein, we report an etching and protecting strategy to prepare Cu nanostructures with controllable shapes, crystalline nature and surface properties. In the developed strategy, the selective use of different additives is critical to the successful synthesis of the Cu nanocrystals: while NH4Cl (or hexadecyl-trimethylammonium chloride (CTAQ) functions as an etchant by a Cl~--O2 pair that can selectively remove twinned nuclei and induce the formation of single nanocrystals with a cubic morphology, the addition of RuCl3 (or FeCl3, FeCl2) can protect the multiply twinned seeds from being etched, and leads to the formation of 5-fold twined nanowires. The controlling strategy reported herein is highlighted by its simplicity and versatility. By further increasing the reaction temperature and prolonging the reaction time, bimetallic CuRu nanotubes can be readily prepared. The applications of these well-defined nanostructures and the developed strategy in controlling other metals are currently under investigation.
机译:与Ag)相比,非盟,Pt和Pd的合成铜纳米晶体,具有良好定义的结构和表面性质取得有限的成功。保护策略准备铜纳米结构与可控形状、结晶性质和表面性质。选择性使用不同的添加剂铜的合成成功的关键纳米晶体:尽管NH4Cl(或hexadecyl-trimethylammonium氯(CTAQ)函数作为一对Cl ~ - O2的腐蚀剂可以有选择地删除孪生核和诱导单与立方纳米晶体的形成形态、添加RuCl3(或FeCl3,FeCl2)可以保护繁殖成双成对的种子蚀刻,并导致的形成5倍捻的纳米线。本报告突出了它的简单和多功能性。反应温度和延长反应时间,双金属CuRu纳米管很容易准备。纳米结构和发展战略目前在控制其他金属调查。

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