论文标题
一项关于CO处理的综合研究:ZnO陶瓷:缺陷化学工程和谷物生长动力学
A comprehensive study on the processing of Co:ZnO ceramics: defect chemistry engineering and grain growth kinetics
论文作者
论文摘要
在本报告中,我们介绍了一项系统的研究,该研究通过不同CO前体(CO3O4,COO和METALLIC CO)和大气(O2和AR)的标准固态途径进行CO:ZnO陶瓷的制备。特别强调了缺陷化学工程和烧结生长动力学。使用基于密度功能理论的第一原理计算来确定ZnO和CO:ZnO系统中主要点缺陷的形成能。根据理论结果,提出了一组化学反应。进行了详细的微结构表征,以确定CO掺入ZnO晶格的程度。由于不一致的ZnO分解,在AR大气中制备的样品和金属CO提出了最高的CO溶解度极限(较低的CO掺入活化能)。确定烧结生长动力学的参数表明,CO3O4是最好的烧结添加剂,以便在两种烧结大气中达到更高的密度。结果证明了O2中的烧结可有效促进ZnO结构中的锌空缺,而AR中的烧结会促进锌的间隙缺陷。我们的发现为理解共掺杂的ZnO陶瓷的制备和烧结的生长动力学做出了宝贵的贡献,这将允许在散装和纳米尺度上加工材料的处理状态。
In this report we present a systematic study on the preparation of Co:ZnO ceramics via standard solid-state route from different Co precursors (Co3O4, CoO and metallic Co) and atmospheres (O2 and Ar). Particular emphasis was done on the defect chemistry engineering and on the sintering growth kinetics. First-principles calculations based on density functional theory were employed to determine the formation energy of the main point defects in ZnO and Co:ZnO systems. Based on the theoretical results a set of chemical reactions was proposed. A detailed microstructural characterization was performed in order to determine the degree of Co incorporation into the ZnO lattice. The samples prepared in Ar atmosphere and from metallic Co presents the highest Co solubility limit (lower apparent Co incorporation activation energy) due to the incongruent ZnO decomposition. The determination of the parameters of the sintering growth kinetics reveals that Co3O4 is the best sintering additive in order to achieve higher densities in both sintering atmospheres. The results give evidences that the sintering in O2 is effective in promoting zinc vacancies in the ZnO structure, while the sintering in Ar promotes zinc interstitial defects. Our findings give valuable contribution to the understanding of the preparation of Co-doped ZnO ceramics and the sintering growth kinetics, what would allow to improve the state of the art on the processing of the material at both bulk and nanometric scales.