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基于介孔TiO/丙烯腈的混合纳米复合材料合成氮化钛。

Synthesis of titanium nitride via hybrid nanocomposites based on mesoporous TiO/acrylonitrile.

作者信息

Locovei Claudiu, Chiriac Anita-Laura, Miron Andreea, Iftimie Sorina, Antohe Vlad-Andrei, Sârbu Andrei, Dumitru Anca

机构信息

Faculty of Physics, University of Bucharest, 077125, Măgurele, Romania.

National Institute of Materials Physics (NIMP), 077125, Măgurele, Romania.

出版信息

Sci Rep. 2021 Mar 3;11(1):5055. doi: 10.1038/s41598-021-84484-3.

Abstract

In the present study, the synthesis of titanium nitride (TiN) by carbothermal reduction nitridation (CRN) reaction using nanocomposites made of mesoporous TiO/acrylonitrile with different content of inorganic phase were explored. The choice of hybrid nanocomposite as precursor for the synthesis of TiN was made due to the possibility of having an intimate interface between the organic and inorganic phases in the mixture that can favours CRN reaction. Subsequently, the hybrid composites have been subjected to four-step thermal treatments at 290 °C, 550 °C, 1000 °C and 1400 °C under nitrogen atmosphere. The XRD results after thermal treatment at 1000 °C under nitrogen flow show the coexistence of two crystalline phases of TiO, i.e. anatase and rutile, as well as TiN phase, together with the detection of amorphous carbon that proved the initiation of CRN reaction. Furthermore, the observations based on XRD patterns of samples thermally treated at 1400 °C in nitrogen atmosphere were in agreement with SEM analysis, that shows the formation of TiN by CRN reaction via hybrid nanocomposites mesoporous TiO/acrylonitrile.

摘要

在本研究中,探索了使用具有不同无机相含量的介孔TiO/丙烯腈制成的纳米复合材料通过碳热还原氮化(CRN)反应合成氮化钛(TiN)。选择杂化纳米复合材料作为合成TiN的前驱体是因为混合物中的有机相和无机相之间可能存在紧密界面,这有利于CRN反应。随后,杂化复合材料在氮气气氛下于290°C、550°C、1000°C和1400°C进行了四步热处理。在氮气流下于1000°C热处理后的XRD结果表明,TiO的两种晶相即锐钛矿和金红石以及TiN相共存,同时检测到无定形碳,这证明了CRN反应的开始。此外,基于在氮气气氛中于1400°C热处理的样品的XRD图谱的观察结果与SEM分析一致,SEM分析表明通过杂化纳米复合材料介孔TiO/丙烯腈通过CRN反应形成了TiN。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2868/7930120/845ee96b378f/41598_2021_84484_Fig1_HTML.jpg

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