La和Mn掺杂PbBi2Nb2O9 Aurivilius相的原子模拟

Q3 Chemistry
Akram La Kilo, Ramona Nintias R. Abas, A. Costanzo, D. Mazza, D. N. Botutihe, Jafar La Kilo
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引用次数: 0

摘要

本研究旨在通过原子模拟来确定Mn3+和La3+掺杂剂对PbBi2Nb2O9 (PBN)结构的影响。在掺杂Mn3+和La3+相之前,对PBN的相结构进行了优化。钙钛矿层中Mn3+部分取代了八面体Nb5+。而La3+在铋层中部分取代Bi3+,在钙钛矿层中部分取代十二面体Pb2+。掺杂PBN的掺杂剂的浓度(x)使其产生不带电的Pb1-2xBi1.5 + 2xLa0.5Nb2-xMnxO9 (x = 0、0.1和0.3)相。仿真结果表明,优化后的PBN电池参数与实验结果吻合较好。随着掺杂剂浓度的增加,Pb1-2xBi1.5+ 2xLa0.5Nb2-xMnxO9相(PBNM-Bi和PBNM-A)的稳定性降低。PBNLM-Bi结构有一定的伸长,表现为细胞参数c增大,而a和b减小。La3+更倾向于占据氧化铋层而不是钙钛矿层的十二面体a位。这一模拟结果可以解释在掺杂浓度一定的情况下,不考虑掺杂PBN的多重性的实验结果所导致的PBLNM结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atomistic Simulation of La and Mn-Doped PbBi2Nb2O9 Aurivillius Phase
This study aims to determine the effect of Mn3+ and La3+ dopants on the structure of PbBi2Nb2O9 (PBN) using atomistic simulation. PBN phase geometry was optimized before the Mn3+ and La3+-doped phase. Mn3+ partially substituted octahedral Nb5+ in the perovskite layer. While La3+partially substituted Bi3+ in the bismuth layer and dodecahedral Pb2+in the perovskite layer. The concentration (x) of dopants that doped PBN was made in such a way that it produces a phase of Pb1-2xBi1.5 + 2xLa0.5Nb2-xMnxO9 (x = 0, 0.1, and 0.3) which was not charged. The simulation results showed that the optimized PBN cell parameters were in a good agreement with the experimental result. Increasing the concentration of dopants result in the Pb1-2xBi1.5+ 2xLa0.5Nb2-xMnxO9 phase (PBNM-Bi and PBNM-A) being less stable, as indicated by the increased lattice energy. PBNLM-Bi structures experiences an elongation which was showed by the cell parameters of c increase while a and b decrease. La3+prefers to occupy bismuth oxide layer rather than the dodecahedral A-site of the perovskite layer. The results of this simulation can explain the PBLNM structure of experimental results that do not pay attention to the multiplicity of doped PBN with certain dopant concentrations.
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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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