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改性镍铝氧化物结构的机械化学制备

Mechanochemical preparation of a modified NiAlO structure.

作者信息

Rivas Maria Elena, Blakiston Charlotte, Seljamäe-Green Riho T, Tran Trung Dung, Thompsett David, Day Stephen, Bilbe Edward, Fisher Janet

机构信息

Johnson Matthey Technology Centre, Blounts Court Road, Sonning Common, Reading RG4 9NH, UK.

出版信息

Faraday Discuss. 2023 Jan 5;241(0):341-356. doi: 10.1039/d2fd00099g.

Abstract

Mechanochemical synthesis routes offer a sustainable, simple method for preparing materials. In this work, NiAlO was synthesised by a mechanically activated method using a high-energy planetary mill and a calcination step. This study aims to identify the effect of different milling energies on the phases, chemical environments and surface composition of the material. In addition, it explores the thermal impact on the decomposition and structure of the materials. The materials were characterised by X-ray phosphorescence (XPS), solid-state UV-VIS (SS-UV-VIS), X-ray diffraction (XRD), nuclear magnetic resonance (NMR), high-resolution transmission electron microscopy (HR-TEM) and thermal gravimetry differential scanning calorimetry (TGA-DSC). A co-precipitated material is used as a reference along with the ground reagents which were used as a baseline. From this in-depth analysis of the material, a good understanding of the disordered partially inverse spinel structure is provided. This study has found that with calcination temperatures of 750 °C and 900 °C a mixed NiAlO : NiO phase is produced with a Ni enriched surface. The surface is found to be relatively stable with the increase from 750 °C to 900 °C.

摘要

机械化学合成路线为材料制备提供了一种可持续、简便的方法。在本工作中,采用高能行星球磨机通过机械活化法并结合煅烧步骤合成了镍铝氧化物(NiAlO)。本研究旨在确定不同球磨能量对材料的相、化学环境和表面组成的影响。此外,还探究了热对材料分解和结构的影响。通过X射线光电子能谱(XPS)、固态紫外可见光谱(SS - UV - VIS)、X射线衍射(XRD)、核磁共振(NMR)、高分辨率透射电子显微镜(HR - TEM)以及热重 - 差示扫描量热法(TGA - DSC)对材料进行了表征。将共沉淀材料用作参考,并将研磨后的试剂用作基线。通过对材料的深入分析,对无序的部分反尖晶石结构有了很好的理解。本研究发现,在750℃和900℃的煅烧温度下,会生成具有富镍表面的NiAlO:NiO混合相。发现随着温度从750℃升高到900℃,表面相对稳定。

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