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首页> 外文期刊>Journal of nanoscience and nanotechnology >Formation Process of Cu_2(OH)_2CO_3 and CuO Hierarchical Nanostructures by Assembly of Hydrated Nanoparticles
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Formation Process of Cu_2(OH)_2CO_3 and CuO Hierarchical Nanostructures by Assembly of Hydrated Nanoparticles

机译:水合纳米粒子的组装形成Cu_2(OH)_2CO_3和CuO多层纳米结构的过程

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Cu_2(OH)_2CO_3 and CuO hierarchical nanostructures with variable morphologies were synthesized by controlled heating hydrated nanoparticles. The growth of nanostructures started with nanoparticles which formed loose aggregates. The nanoparticles within aggregates reorganized to form urchin-like structures which consisted of dense nanorods. With the growth of nanorods, regular microspheres were formed. At the same time, the nanorods coalesced to form wedge-like structures. The various surface subunits were just the outer display of wedge-like structures under different conditions. CuO nanostructures were gained by pyrolysis of malachite precursors. The attractive electrostatic force was responsible for aggregation of nanoparticles. During growth of aggregates, nanorods acted as growing tips which adsorbed adjacent nanoparticles. The Brownian motion was responsible for reorientation of nanoparticles to achieve low-energy configuration. Adsorbed water played an important role during formation of malachite nanostructures. The effect of growing environments on nanostructures was investigated. XRD, SEM, TEM and BET and so on were used to characterize the products.
机译:通过控制加热水合纳米颗粒,合成了具有可变形态的Cu_2(OH)_2CO_3和CuO分层纳米结构。纳米结构的生长始于形成疏松聚集体的纳米颗粒。聚集体内的纳米颗粒重新组织形成了由密实的纳米棒组成的类似海胆的结构。随着纳米棒的生长,形成规则的微球。同时,纳米棒聚结形成楔形结构。在不同条件下,各种表面亚基只是楔形结构的外部展示。通过孔雀石前体的热解获得了CuO纳米结构。静电吸引力是纳米颗粒聚集的原因。在聚集体的生长过程中,纳米棒充当了吸收相邻纳米颗粒的生长尖端。布朗运动负责纳米粒子的重新定向以实现低能量构型。吸附的水在孔雀石纳米结构的形成过程中起着重要作用。研究了生长环境对纳米结构的影响。用XRD,SEM,TEM和BET等对产物进行表征。

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