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Cost-effective sol-gel synthesis of porous CuO nanoparticle aggregates with tunable specific surface area

机译:具有可调节比表面积的高性价比溶胶-凝胶法合成多孔CuO纳米颗粒聚集体

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摘要

CuO nanoparticles (NPs) are applied in various key technologies, such as catalysis, energy conversion, printable electronics and nanojoining. In this study, an economic, green and easy-scalable sol-gel synthesis method was adopted to produce submicron-sized nanoporous CuO NP aggregates with a specific surface area > 18 m²/g. To this end, a copper-carbonate containing precursor was precipitated from a mixed solution of copper acetate and ammonia carbonate and subsequently calcinated at T ≥ 250 °C. The thus obtained CuO nanopowder is composed of weakly-bounded agglomerates, which are constituted of aggregated CuO NPs with a tunable size in the range of 100–140 nm. The CuO aggregates, in turn, are composed of equi-axed primary crystallites with a tunable crystallite size in the range of 20–40 nm. The size and shape of the primary CuO crystallites, as well as the nanoporosity of their fused CuO aggregates, can be tuned by controlled variation of the degree of supersaturation of the solution via the pH and the carbonate concentration. The synthesized submicron-sized CuO aggregates can be more easily and safely processed in the form of a solution, dispersion or paste than individual NPs, while still offering the same enhanced reactivity due to their nanoporous architecture.
机译:CuO纳米颗粒(NPs)应用于各种关键技术,例如催化,能量转换,可印刷电子学和纳米连接。在这项研究中,采用一种经济,绿色且易于扩展的溶胶-凝胶合成方法来生产比表面积> 18m²/ g的亚微米级纳米多孔CuO NP聚集体。为此,从乙酸铜和碳酸氨的混合溶液中沉淀出含碳酸铜的前体,然后在T≥250℃下煅烧。如此获得的CuO纳米粉是由弱结合的团块组成的,团块由聚集的CuO NP组成,其大小可调范围为100-140nm。反过来,CuO聚集体由等轴的初晶组成,其微晶尺寸在20-40nm范围内可调。可以通过控制溶液的过饱和度(通过pH值和碳酸盐浓度)的变化来调节主要CuO晶体的大小和形状,以及它们熔融的CuO聚集体的纳米孔隙度。与单个NP相比,合成的亚微米级CuO聚集体可以溶液,分散液或糊状的形式更轻松,更安全地进行处理,同时由于其纳米孔结构而仍提供相同的增强的反应性。

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