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Colloidal synthesis of Cu-ZnO and Cu@CuNi-ZnO hybrid nanocrystals with controlled morphologies and multifunctional properties

机译:胶体的合成Cu-ZnO Cu@CuNi-ZnO混合动力与控制纳米晶体形态和多功能特性

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摘要

Metal-semiconductor hybrid nanocrystals have received extensive attention owing to their multiple functionalities which can find wide technological applications. The utilization of low-cost non-noble metals to construct novel metal-semiconductor hybrid nanocrystals is important and meaningful for their large-scale applications. In this study, a facile solution approach is developed for the synthesis of Cu-ZnO hybrid nanocrystals with well-controlled morphologies, including nanomultipods, core-shell nanoparticles, nanopyramids and core-shell nanowires. In the synthetic strategy, Cu nanocrystals formed in situ serve as seeds for the heterogeneous nucleation and growth of ZnO, and it eventually forms various Cu-ZnO hetero-nanostructures under different reaction conditions. These hybrid nanocrystals possess well-defined and stable heterostructure junctions. The ultraviolet-visible-near infrared spectra reveal morphology-dependent surface plasmon resonance absorption of Cu and the band gap absorption of ZnO. Furthermore, we construct a novel Cu@CuNi-ZnO ternary hetero-nanostructure by incorporating the magnetic metal Ni into the pre-synthesized colloidal Cu nanocrystals. Such hybrid nanocrystals possess a magnetic Cu-Ni intermediate layer between the ZnO shell and the Cu core, and exhibit ferromagnetic/superparamagnetic properties which expand their functionalities. Finally, enhanced photocatalytic activities are observed in the as-prepared non-noble metal-ZnO hybrid nanocrystals. This study not only provides an economical way to prepare high-quality morphology-controlled Cu-ZnO hybrid nanocrystals for potential applications in the fields of photocatalysis and photovoltaic devices, but also opens up new opportunities in designing ternary non-noble metal-semiconductor hybrid nanocrystals with multifunctionalities.
机译:金属半导体接触混合纳米晶体有由于受到广泛的关注多个功能可以得到广泛技术的应用程序。低成本的非贵金属金属构造的小说金属半导体接触混合纳米晶体大规模的重要和有意义的应用程序。方法是合成Cu-ZnO发达混合纳米晶体与控制形态,包括nanomultipods,核壳纳米粒子,nanopyramids和核壳纳米线。纳米晶体形成原位作为种子氧化锌的异相成核和生长,并最终形成各种Cu-ZnOhetero-nanostructures在不同反应条件。定义良好和稳定的异质结构连接。光谱揭示morphology-dependent表面等离子体共振吸收的铜和乐队差距氧化锌吸收。小说Cu@CuNi-ZnO三元hetero-nanostructure通过将磁性金属Ni纳入pre-synthesized胶体铜纳米晶体。混合纳米晶体具有磁Cu-Ni氧化锌壳和之间的中间层铜核心和展览铁磁/超顺磁的特性扩大他们的功能。光催化中观察到的活动和非贵金属metal-ZnO混合纳米晶体。准备高质量的经济方式morphology-controlled Cu-ZnO混合纳米晶体领域的潜在应用光催化和光电设备,但也在三元设计开辟了新的机会非贵金属金属半导体接触混合纳米晶体多功能性。

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