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Hydrothermal growth of cross-linked hyperbranched copper dendrites using copper oxalate complex

机译:草酸铜配合物对交联超支化铜枝晶的水热生长

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A facile and surfactant-free approach has been developed for the synthesis of cross-linked hyperbranched copper dendrites using copper oxalate complex as a precursor and oxalic acid as a reducing and structure-directing agent. The synthesized particles are composed of highly branched nanostruc-tures with unusual cross-linked hierarchical networks. The formation of copper dendrites can be explained in view of both diffusion control and aggregation-based growth model accompanied by the chelation-assisted assembly. Oxalic acid was found to play dual roles as reducing and structure-directing agent based on the investigation results. The understanding on the crystal growth and the roles of oxalic acid provides clear insight into the formation mechanism of hyperbranched metal dendrites.
机译:已经开发了一种简便且无表面活性剂的方法,该方法使用草酸铜络合物作为前驱体和草酸作为还原剂和结构导向剂来合成交联的超支化铜树枝状晶体。合成的颗粒由具有高度分支的纳米结构和不寻常的交联层次网络组成。铜枝晶的形成可以通过结合螯合辅助组装的扩散控制和基于聚集的生长模型来解释。根据研究结果,发现草酸起着还原和结构导向剂的双重作用。对晶体生长和草酸作用的了解为超支化金属枝晶的形成机理提供了清晰的见识。

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