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Structural and optical properties of Li substituted CuO nanoparticles

机译:Li取代的CuO纳米粒子的结构和光学性质

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摘要

Copper oxide (CuO) is a favorable material for photovoltaic application where lattice defects/distortions play a significant role for shaping its optical and several other physical properties. In this study, pristine and lithium (Li) substituted CuO nanoparticle (1.0, 3.0, 5.0 and 7.0 mol% of Li) have been prepared via an eco-friendly and cost-effective sol-gel method and a systematic study on the effect of Li ion substitution has been drawn. The Rietveld refinement results confirmed the Li ion substitution obsessed structural alteration from monoclinic to tetragonal symmetry (C2/c - I4/mmm). It was observed that the C2/c and I4/mmm synchronized phases continues up to 7%. Such structural alteration leads to fascinating optical properties due to destruction of parent phase. Moreover, lithium cations inhibit the crystal growth, which created various types of vacancy/defect states that essentially need to be investigated using SEM, FTIR and Raman spectroscopy. Moreover, we have demonstrated that the native lattice alterations brought by size misalliance amid the host [Cu2+ (0.73 )] and the dopant [Li + (0.76 )] and the presence of oxygen vacancies created via Li substitution in CuO also results in the increment of deep level emission in photoluminescence spectra. The obtained results confirmed that Li ion substitution remarkably enhance optical properties, making such materials promising for device applications.
机译:氧化铜(CuO)是光伏应用的理想材料,其中晶格缺陷/畸变在塑造其光学和其他一些物理特性方面起着重要作用。在这项研究中,通过生态友好且具有成本效益的溶胶-凝胶方法,以及系统研究了纯锂和锂(Li)取代的CuO纳米颗粒(分别为Li的1.0、3.0、5.0和7.0 mol%),已经提出了锂离子取代。 Rietveld精修结果证实,锂离子取代困扰了从单斜向四方对称的结构变化(C2 / c→I4 / mmm)。观察到,C2 / c和I4 / mmm同步相位持续高达7%。由于破坏了母相,这种结构改变导致了令人着迷的光学性质。此外,锂阳离子会抑制晶体的生长,这会产生各种类型的空位/缺陷状态,这基本上需要使用SEM,FTIR和拉曼光谱进行研究。此外,我们已经证明了在主体[Cu2 +(0.73)]和掺杂物[Li +(0.76)]中尺寸失配带来的天然晶格变化以及在CuO中通过Li取代产生的氧空位也导致了这种增加。发光光谱中深能级发射的特性。所获得的结果证实了锂离子取代显着提高了光学性能,使得这种材料有望用于装置应用。

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