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First-Principles Study of Dissociation Processes for the Synthesis of Fe and Co Oxide Nanoparticles

机译:第一原理研究二氧化碳纳米粒子合成的解离方法

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Thermal decomposition is a practical and reliable tool to synthesize nanoparticles with monodisperse size distribution and reproducible accuracy. The nature of the precursor molecules and their interaction with the environment during the synthesis process have a direct impact on the resulting nanoparticles. Our study focuses on widely used transition-metal (Co, Fe) stearates precursors and their thermal decomposition reaction pathway. We show how the nature of the metal and the presence or absence of water molecules, directly related to the humidity conditions during the synthesis process, affect the decomposition mechanism and the resulting transition-metal oxide building blocks. This, in turn, has a direct effect on the physical and chemical properties of the produced nanoparticles and deeply influences their composition and morphology.
机译:热分解是一种实用且可靠的工具,用于合成具有单分散尺寸分布和可再现精度的纳米颗粒。 在合成过程中,前体分子的性质及其与环境的相互作用对所得纳米颗粒具有直接影响。 我们的研究侧重于广泛使用的过渡金属(CO,Fe)硬脂属前体及其热分解反应途径。 我们展示了金属的性质和水分子的存在或不存在,与合成过程中的湿度条件直接相关,影响了分解机制和所得的过渡金属氧化物构建块。 反过来,这对所产生的纳米颗粒的物理和化学性质直接影响,并深入影响它们的组成和形态。

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