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草酸铋(Bi(CO)·7H₂O)和碱式草酸铋(Bi(CO)OH)的热分解再探讨。低熔点铋纳米颗粒的形成。

Bi(CO)·7HO and Bi(CO)OH Oxalates Thermal Decomposition Revisited. Formation of Nanoparticles with a Lower Melting Point than Bulk Bismuth.

作者信息

Roumanille Pierre, Baco-Carles Valérie, Bonningue Corine, Gougeon Michel, Duployer Benjamin, Monfraix Philippe, Le Trong Hoa, Tailhades Philippe

机构信息

Institut de Recherche Technologique Saint Exupéry , 118 route de Narbonne, CS 44248, 31432 Toulouse Cedex 4, France.

Institut Carnot Chimie Balard Cirimat, UMR CNRS 5085, Université de Toulouse, CNRS, INPT, UPS, Université Toulouse 3 Paul Sabatier , 118 route de Narbonne, 31062 Toulouse Cedex 9, France.

出版信息

Inorg Chem. 2017 Aug 21;56(16):9486-9496. doi: 10.1021/acs.inorgchem.7b00608. Epub 2017 Aug 3.

Abstract

Two bismuth oxalates, namely, Bi(CO)·7HO and Bi(CO)OH, were studied in terms of synthesis, structural characterization, particle morphology, and thermal behavior under several atmospheres. The oxalate powders were produced by chemical precipitation from bismuth nitrate and oxalic acid solutions under controlled pH, then characterized by X-ray diffraction (XRD), temperature-dependent XRD, IR spectroscopy, scanning electron microscopy, and thermogravimetric differential thermal analyses. New results on the thermal decomposition of bismuth oxalates under inert or reducing atmospheres are provided. On heating in nitrogen, both studied compounds decompose into small bismuth particles. Thermal properties of the metallic products were investigated. The Bi(CO)OH decomposition leads to a Bi-BiO metal-oxide composite product in which bismuth is confined in a nanometric size, due to surface oxidation. The melting point of such bismuth particles is strongly related to their crystallite size. The nanometric bismuth melting has thus been evidenced ∼40 °C lower than for bulk bismuth. These results should contribute to the development of the oxalate precursor route for low-temperature soldering applications.

摘要

对两种草酸铋,即Bi₂(C₂O₄)₃·7H₂O和Bi₂(C₂O₄)₃OH,在合成、结构表征、颗粒形态以及在几种气氛下的热行为方面进行了研究。通过在可控pH值下由硝酸铋和草酸溶液进行化学沉淀制备草酸盐粉末,然后用X射线衍射(XRD)、变温XRD、红外光谱、扫描电子显微镜和热重-差热分析对其进行表征。提供了关于草酸铋在惰性或还原气氛下热分解的新结果。在氮气中加热时,两种研究的化合物都分解为小的铋颗粒。对金属产物的热性质进行了研究。Bi₂(C₂O₄)₃OH的分解导致形成一种Bi-Bi₂O金属氧化物复合产物,由于表面氧化,其中铋被限制在纳米尺寸。这种铋颗粒的熔点与其微晶尺寸密切相关。因此,已证明纳米铋的熔点比块状铋低约40℃。这些结果应有助于开发用于低温焊接应用的草酸盐前驱体路线。

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