首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Composition tunable cobalt-nickel and cobalt-iron alloy nanoparticles below 10 nm synthesized using acetonated cobalt carbonyl
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Composition tunable cobalt-nickel and cobalt-iron alloy nanoparticles below 10 nm synthesized using acetonated cobalt carbonyl

机译:使用羰基化钴化钴合成的10 nm以下可调谐的钴镍镍和钴铁合金纳米粒子

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摘要

A general organometallic route has been developed to synthesize Co _x Ni _(1-x) and Co _x Fe _(1-x) alloy nanoparticles with a fully tunable composition and a size of 4-10 nm with high yield. In contrast to previously reported synthesis methods using dicobalt octacarbonyl (Co _2(CO) _8), here the cobalt-cobalt bond in the carbonyl complex is first broken with anhydrous acetone. The acetonated compound, in the presence of iron carbonyl or nickel acetylacetonate, is necessary to obtain small composition tunable alloys. This new route and insights will provide guidelines for the wet-chemical synthesis of yet unmade bimetallic alloy nanoparticles.
机译:已经开发出一种通用的有机金属路线,以高产率合成具有完全可调的组成和4-10 nm尺寸的Co _x Ni _(1-x)和Co _x Fe _(1-x)合金纳米粒子。与先前报道的使用双钴八羰基二钴(Co _2(CO)_8)的合成方法相反,羰基络合物中的钴-钴键首先被无水丙酮破坏。在羰基铁或乙酰丙酮镍的存在下,该丙酮化合物对于获得小组成的可调合金是必需的。这种新的途径和见解将为湿化学合成尚未制备的双金属合金纳米颗粒提供指导。

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