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The effect of graphene oxide on structural, opto-electrical and thermal properties of manganese sillenite (Bi12MnO20) nano-powders

机译:氧化石墨烯氧化物对锰硫酸锰(Bi12mNO20)纳米粉末结构,光学电气和热性能的影响

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In this study, manganese sillenite nano-powders were produced by hydrothermal method by adding graphene oxide in different mass amounts. Structural, morphological, thermal, optical and electrical properties of the obtained undoped and graphene-oxide-doped samples were investigated. XRD results showed that the produced samples had nano-sizes and the crystal sizes changed with the addition of graphene oxide. SEM and TEM images showed that the microstructures of the samples were nano-sized and composed of randomly oriented particles without orientation relationship between them. From FT-IR spectra of the samples, chemical properties and bond structures were determined. With the help of thermal analysis measurements, reactions in the sample structures at increasing temperatures, reaction temperatures, reaction energies and total mass losses were determined. The forbidden energy ranges of the samples decreased at significant rates with the addition of graphene oxide. By checking the P-E hysteresis cycles, the samples are understood to show ferroelectric properties. Dielectric measurements and temperature-dependent electrical conductivity measurements of the produced nano-powders confirmed that the samples exhibited semiconductor behaviour. The obtained results showed that manganese sillenites can be synthesised by low-temperature hydrothermal method and physical, chemical and thermal properties can be controlled by adding different amounts of graphene oxide for use in electronic and energy applications.
机译:在该研究中,通过在不同质量量中加入石墨烯氧化物来生产锰Sillenite纳米粉末。研究了所得未掺杂和石墨烯氧化物掺杂样品的结构,形态,热,光学和电性能。 XRD结果表明,所生产的样品具有纳米尺寸,并通过加入石墨烯氧化物改变晶体尺寸。 SEM和TEM图像显示样品的微观结构是纳米尺寸的并且由无随机取向的颗粒组成,而不会在它们之间取向关系。从样品的FT-IR光谱,测定化学性质和粘合结构。借助热分析测量,测定了在增加温度,反应温度,反应能量和总质量损失时的样品结构中的反应。样品的禁止能量范围以显着的速率降低,加入石墨烯氧化物。通过检查P-E滞后循环,样本应理解为显示铁电性质。所生产的纳米粉末的介电测量和温度依赖性电导率测量证实样品表现出半导体行为。所得结果表明,通过低温水热法合成锰Sillenites,可以通过添加用于电子和能量应用的不同量的石墨烯氧化物来控制物理,化学和热性能。

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