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Synthesis and Study of Fluorescent Forest-like Carbon Nanotubes Doped with Oxides of Rare-earth Elements

机译:稀土元素氧化物掺杂荧光森林碳纳米管的合成与研究

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Background: Methods for obtaining the hybrids of multi-wall carbon nanotubes (MWCNTs) and rare earths are in progress. Such composites may possess luminescent properties, which could be of interest for various areas, in particular, medicine (imaging), engineering (fluorescent polymers, LED and relative materials), among other applications. Lanthanide oxides, additionally, can serve as catalysts for MWCNTs formation and catalysts of several organic reactions. Objective: The goal of this work is to obtain the composites of MWCNTs with strontium aluminate, doped with several lanthanides (Eu, Ce, La, Nd, and Sm), via the spray pyrolysis method and to study the properties of the formed hybrids. Methods: The spray pyrolysis method in the temperature range from 780 to 850°C, starting from toluene as a carbon source and ferrocene as a catalyst precursor. SrAl12O19 doped with rare-earths were added to carbon matter in the ultrasonic field. Results: Among various structures, the forest-like nanostructures have been observed in some cases. The formed coated carbon nanotubes possess fluorescent properties due to the attachment of lantha-nide-doped ceramic compound (SrAli2O19) to their surface, allowing the emission control for each dopant: yellow (Nd2O3), blue (Eu2O3 and Sm2O3), intense orange (La2O3), light orange (Ce2O3). Conclusion: MWCNTs decorated with strontium aluminate (SrAl12O19), doped with a series of lanthanide oxides (Nd2O3, Eu2O3, La2O3, Ce2O3, Srn2O3), were obtained by the spray pyrolysis technique on the surface of optical fibers. Lanthanum- and cerium-containing coatings were found to show a better deposition on the MWCNTs surface, exhibiting uniform coating. MWCNTs, coated with Nd-, Ce-, and Eu-doped SrAl12O19 were shown to reveal the best conductive properties.
机译:背景:获得多壁碳纳米管(MWCNT)和稀土的杂种的方法正在进行中。这种复合材料可能具有发光性质,其可能对各种区域感兴趣,特别是药物(成像),工程(荧光聚合物,LED和所述相对材料)以及其他应用。另外,镧系氧化物可以用作MWCNT的形成和几种有机反应的催化剂的催化剂。目的:这项工作的目的是通过喷雾热解方法掺杂有铝酸锶的MWCNTs的组合物,掺杂有几种镧系元素(Eu,Ce,La,Nd和Sm),并研究形成的杂种的性质。方法:从780至850℃的温度范围内的喷雾热解方法,从甲苯开始,作为碳源和二茂铁作为催化剂前体。掺杂有稀土的SRAL12O19在超声波场中加入到碳物质中。结果:在各种结构中,在某些情况下已经观察到森林纳米结构。由于将Lantha-ide掺杂的陶瓷化合物(SRALI2O19)连接到它们的表面,所形成的涂覆的碳纳米管具有荧光特性,允许每次掺杂剂的排放控制:黄色(ND2O3),蓝色(EU2O3和SM2O3),强烈橙色( La2O3),浅橙色(CE2O3)。结论:用掺杂有一系列镧系元素氧化物(Nd2O3,Eu2O3,La2O3,Ce2O3,Srn2O3),通过喷雾热解技术在光纤表面上获得MWCNT。发现镧和含铈涂层在MWCNTS表面上显示出更好的沉积,表现出均匀的涂层。显示涂有ND-,CE-和EU掺杂的SRAL12O19的MWCNT,显示出最佳导电性能。

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