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对ZnFeAlO(0.01≤x≤0.40)纳米晶体中缺陷产生及光学性质调控的机理洞察

Mechanistic insights into defect generation and tuning of optical properties in ZnFeAlO(0.01 ≤ x ≤ 0.40) nanocrystals.

作者信息

Jain Megha, Vashishtha Pargam, Gupta Govind, Sinha Anil Kumar, Gupta Mukul, Vij Ankush, Thakur Anup

机构信息

Advanced Materials Research Laboratory, Department of Basic and Applied Sciences, Punjabi University, Patiala, Punjab 147002, India.

Advanced Materials and Devices Division, CSIR-National Physical Laboratory, New Delhi 110012, India.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2020 Oct 1;76(Pt 5):757-768. doi: 10.1107/S2052520620009130. Epub 2020 Aug 15.

Abstract

The correlation of several defects and optical and magnetic properties with Fe content in ZnFeAlO (0.01 ≤ x ≤ 0.40) nanocrystals has been scrutinized through X-ray diffraction, O K-edge X-ray absorption near-edge structure, FT-IR, diffuse reflectance, photoluminescence and electron spin-resonance spectroscopies, and vibrating sample magnetometry. Increasing Fe content causes elongation in the octahedral units of the lattice, accompanied by distortion in the octahedral coordination. Fe introduces non-radiative centres in the forbidden gap, thereby tuning the band gap from 4.37 to 3.88 eV and eliminating emission in the visible region. Zn vacancies are found to tail off, while {\rm Fe}i^{\bullet \bullet \bullet}, {\rm Al}{\rm Zn}^\bullet and Fe antisite defects increase in concentration with increasing Fe content. Inhomogeneous broadening of spin-resonance signals infers strong spin-lattice interactions of Fe ions at distorted octahedral and non-symmetric tetrahedral sites. A transition is observed from paramagnetism to superparamagnetism at higher Fe concentrations. A visual colour change from pearly white to orange-brown is observed in ZnFeAlO nanocrystals with increasing Fe content, revealing its potential candidature for pigments in the paint and dye industries.

摘要

通过X射线衍射、O K边X射线吸收近边结构、傅里叶变换红外光谱、漫反射、光致发光和电子自旋共振光谱以及振动样品磁强计,研究了ZnFeAlO(0.01≤x≤0.40)纳米晶体中几种缺陷与光学和磁性性质与铁含量的相关性。铁含量的增加导致晶格八面体单元伸长,同时八面体配位发生畸变。铁在禁带中引入非辐射中心,从而将带隙从4.37 eV调节到3.88 eV,并消除可见光区域的发射。发现锌空位减少,而随着铁含量的增加,{\rm Fe}i^{\bullet \bullet \bullet}、{\rm Al}{\rm Zn}^\bullet和铁反位缺陷的浓度增加。自旋共振信号的非均匀展宽表明铁离子在畸变八面体和非对称四面体位置存在强自旋-晶格相互作用。在较高铁浓度下观察到从顺磁性到超顺磁性的转变。随着铁含量的增加,在ZnFeAlO纳米晶体中观察到从珍珠白色到橙棕色的视觉颜色变化,揭示了其在油漆和染料工业中作为颜料的潜在候选资格。

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