Investigation to Understand the Co Ions Inclusion in Ba3SnO Antiperovskites Structure

Naveed Jafar, G. Murtaza, Ghazanfar Nazir, Adeela Rehman
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引用次数: 1

Abstract

The current research focuses on the fabrication and characterization of barium tin oxide antiperovskite oxide Ba3SnO. BaO and Sn2O were used as precursors to synthesise the Ba3SnO by using solid state ceramic method. Co ion has been implanted using Pelletron Accelerator with different doses 1013, 5×1013, 1014 ions/cm2. The study includes the investigations of penetration depth range of Co ions in the target material, structural, surface morphology, verification of elemental composition, and band gap energy by using the characterization techniques SRIM, XRD, SEM, EDX, FTIR, and UV-Vis spectroscopy respectively. Phase identification of desired material assures by XRD. SEM results showed that the rough and sharp rod shape varies into a very smooth and fine granular shape by ion implantation. EDX plots confirm the existence of basic elements like Ba, Sn, Co and O. The FTIR identify the unknown material and components which confirmed the formation of B3SnO and incorporation of Co ions. UV-Vis spectroscopy results revealed that increasing the implanted ion dose causes a slight increase in band gap energy from 2.61 to 2.88 of this material. The obtained results allow us to conclude that the prepared sample contains a fine structure with no impurity. Therefore, we can say that this process is ideal for obtaining fine structured Ba3SnO.
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Ba3SnO反钙钛矿结构中Co离子包合的研究
目前的研究重点是钡锡氧化物Ba3SnO的制备和表征。以BaO和Sn2O为前驱体,采用固态陶瓷法制备了Ba3SnO。用Pelletron加速器注入不同剂量的Co离子1013、5×1013、1014离子/cm2。研究包括利用SRIM、XRD、SEM、EDX、FTIR和UV-Vis光谱等表征技术对Co离子在靶材料中的渗透深度范围、结构、表面形貌、元素组成和带隙能进行验证。通过XRD确定所需材料的相。SEM结果表明,离子注入后,粗尖的棒状结构转变为光滑的细颗粒状结构。EDX图证实了Ba、Sn、Co和o等基本元素的存在,FTIR鉴定了未知物质和成分,证实了B3SnO的形成和Co离子的掺入。紫外可见光谱结果表明,随着注入离子剂量的增加,该材料的带隙能从2.61略微增加到2.88。所得结果使我们得出结论,所制备的样品具有良好的结构,没有杂质。因此,我们可以说该工艺是获得结构精细的Ba3SnO的理想工艺。
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