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Calcination does not remove all carbon from colloidal nanocrystal assemblies

机译:煅烧并不能从胶体纳米晶体组件中除去所有碳

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Removing organics from hybrid nanostructures is a crucial step in many bottom-up materials fabrication approaches. It is usually assumed that calcination is an effective solution to this problem, especially for thin films. This assumption has led to its application in thousands of papers. We here show that this general assumption is incorrect by using a relevant and highly controlled model system consisting of thin films of ligand-capped ZrO2 nanocrystals. After calcination at 800?°C for 12?h, while Raman spectroscopy fails to detect the ligands after calcination, elastic backscattering spectrometry characterization demonstrates that ~18% of the original carbon atoms are still present in the film. By comparison plasma processing successfully removes the ligands. Our growth kinetic analysis shows that the calcined materials have significantly different interfacial properties than the plasma-processed counterparts. Calcination is not a reliable strategy for the production of single-phase all-inorganic materials from colloidal nanoparticles.
机译:从混合纳米结构中去除有机物是许多自下而上的材料制造方法中的关键步骤。通常认为煅烧是解决此问题的有效方法,尤其是对于薄膜。这种假设导致其在数千篇论文中得到应用。我们在这里表明,通过使用由配体封端的ZrO2纳米晶体薄膜组成的相关且高度受控的模型系统,此一般假设是不正确的。在800°C下煅烧12?h后,尽管拉曼光谱在煅烧后无法检测到配体,但弹性背散射光谱表征表明,薄膜中仍存在约18%的原始碳原子。通过比较,等离子体处理成功地去除了配体。我们的生长动力学分析表明,煅烧后的材料与等离子处理后的材料相比具有明显不同的界面特性。煅烧不是从胶体纳米颗粒生产单相全无机材料的可靠策略。

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