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首页> 外文期刊>Crystal growth & design >Branched copper nanocrystal corals by room-temperature galvanic displacement
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Branched copper nanocrystal corals by room-temperature galvanic displacement

机译:室温电位移置换支化铜纳米晶体珊瑚

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摘要

Coral-like branched architectures comprised of single-crystal copper nanocrystals were synthesized at room temperature through a galvanic displacement reaction between aqueous CuCl_2 and Al foil in the presence of a cationic double-chain surfactant diocta-decyl-dimethyl-ammonium bromide. The corals are monolithic single crystals consisting of nanorod stems with an axis along 〈001〉 and orthogonal branches along 〈110〉. The branch diameters fall in a narrow range between 80 and 100 nm, and the branch lengths vary between 200 and 800 nm. The branch density is controllable by adjusting the surfactant/metal-ion ratio in solution and reaction time. These branched structures could serve as attractive building blocks for creating interconnected nanorod networks or porous materials for diverse applications, including catalysts, sensors, solid-state refrigerators, and nanodevices.
机译:在室温下,在阳离子双链表面活性剂二辛基-癸基-二甲基溴化铵的存在下,通过水溶液CuCl_2和Al箔之间的电置换反应,合成了由单晶铜纳米晶体组成的类似珊瑚的分支结构。珊瑚是由纳米棒茎组成的整体单晶,其茎沿<001>轴且正交分支沿<110>。分支直径落在80至100nm之间的狭窄范围内,并且分支长度在200至800nm之间变化。支链密度可通过调节溶液中的表面活性剂/金属离子比和反应时间来控制。这些分支结构可以作为有吸引力的构建基块,用于创建互连的纳米棒网络或用于多种应用的多孔材料,包括催化剂,传感器,固态冰箱和纳米设备。

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