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首页> 外文期刊>CERAMICS INTERNATIONAL >A comparative study of magnetic, photocatalytic and dielectric properties of NiO nanoparticles synthesized by sol-gel and composite hydroxide mediated method
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A comparative study of magnetic, photocatalytic and dielectric properties of NiO nanoparticles synthesized by sol-gel and composite hydroxide mediated method

机译:溶胶 - 凝胶合成的NiO纳米粒子磁性,光催化和介电性能的对比研究及复合氢氧化物介导方法

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摘要

In this study, Nickel oxide (NiO) nanoparticles were synthesized by conventional sol-gel (SG) route using citric acid as an end-capping agent and composite-hydroxide-mediated (CHM) approach. XRD and FTIR confirmed the formation of NiO nanoparticles and the average crystallite size was found to be 68 and 34 nm for SG and CHM method, respectively. Raman spectroscopy revealed higher intensity of one-phonon longitudinal optical (1LO) mode in CHM nanoparticles which is attributed to the presence of defects such as Ni or oxygen vacancies. The two-magnon (2 M) band at 1472 cm(-1 )confirmed antiferromagnetic (AFM) nature of SG nanoparticles whereas its suppression in CHM nanoparticles indicate superparamagnetic (SPM) nature of the nanoparticles due to decrease in average crystallite size. The magnetic measurements also confirmed the AFM and SPM state of SG and CHM nanoparticles, respectively in accordance with Raman spectroscopy. A sharp and low blocking temperature peak in ZFC/FC also indicates smaller and uniform sized NiO nanoparticles synthesized by CHM method. Optical studies revealed a large value of energy band gap for CHM nanoparticles due to their small average crystallite size and is attributed to quantum confinement effect. A higher photocatalytic performance was observed for CHM nanoparticles due to their large surface area and higher concentration of oxygen vacancies in accordance with Raman spectra. A higher dielectric constant was also observed for CHM nanoparticles due to increased number of grains per unit volume in smaller crystallites. In summary, CHM is one of the most simple synthesis approach that provides fine single-phase NiO nanoparticles at low calcined temperature with improved magnetic, photocatalytic and dielectric properties as compared to SG method.
机译:在该研究中,使用柠檬酸作为封端剂和复合氢氧化物介导(CHM)方法,通过常规溶胶 - 凝胶(SG)途径合成氧化镍(NIO)纳米颗粒。 XRD和FTIR确认了NiO纳米颗粒的形成,并且分别发现平均微晶尺寸为68和34nm,分别为SG和CHM方法。拉曼光谱显示CHM纳米粒子中的单声子纵向光学(1LO)模式的更高强度,其归因于诸如Ni或氧空位的缺陷。在1472cm(-1)的双镁(2米)带确认了SG纳米粒子的反铁磁性(AFM)性质,而其在CHM纳米粒子中的抑制表示由于平均微晶尺寸的降低,因此表示纳米颗粒的超顺磁性(SPM)性质。磁性测量还根据拉曼光谱分别确认了SG和CHM纳米粒子的AFM和SPM状态。 ZFC / FC中的急剧和低阻断温度峰也表示通过CHM方法合成的较小和均匀的尺寸纳米颗粒。光学研究揭示了CHM纳米粒子的能带隙的大值,因为它们的小平均微晶尺寸,归因于量子限制效应。由于它们的大表面积和根据拉曼光谱,对CHM纳米颗粒观察到CHM纳米颗粒的较高的光催化性能。由于在较小的微晶中每单位体积增加,CHM纳米颗粒也观察到更高的介电常数。总之,CHM是最简单的合成方法之一,其在低煅烧温度下提供精细的单相NiO纳米颗粒,与SG方法相比,具有改善的磁性,光催化和介电性能。

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