首页> 外文期刊>Solid state sciences >Charge ordering in Ag2BiO3
【24h】

Charge ordering in Ag2BiO3

机译:Ag2BiO3中的电荷排序

获取原文
获取原文并翻译 | 示例
           

摘要

In order to resolve discrepancies between the valence state +IV as assigned to bismuth in Ag2BiO3 based on structural arguments, and its physical properties, we have reinvestigated this compound. By single crystal structure analyses at different temperatures in combination with neutron powder diffraction, systematic twinning was recognized. Thus, the former model describes the average structure of the twinned crystal. By refining the data set assuming an inversion twin, the correct crystallographic description has been achieved (Ag2BiO3, Pnn2, a = 5.9830(8), b = 6.3239(7), c = 9.5762(13) angstrom, Z = 4). In this model, there are two distinct crystallographic sites for bismuth, allowing for a charge ordering according to Ag2Bi3+Bi5+ O-3. Average distances in BiO6-octahedra are 2.34 and 2.13 angstrom, for Bi3+ and Bi5+, respectively. The bond valence sums are calculated as 3.08 and 5.06. This charge ordering at room temperature fully explains the semiconducting behavior and diamagnetism of the Compound. Moreover, temperature dependent neutron powder diffraction (2-298 K) revealed a monoclinic distortion of the lattice upon cooling that was confirmed independently by single crystal investigations (100 K). The structure was refined in Pit (a = 5.95492(10), b = 6.31001(9), c = 9.58082(13) angstrom, beta = 92.4823(2)degrees, Z = 4, T = 100 K). Except for a tilting of the Bi06-octahedra with oxygen atoms at common vertices acting as hinges, no but slight structural changes have been observed. The bismuth charge ordering is unaffected by the orthorhombic/monoclinic phase transition. (c) 2006 Elsevier SAS. All rights reserved.
机译:为了解决基于结构论点在Ag2BiO3中分配给铋的价态+ IV与物理性质之间的差异,我们对这种化合物进行了重新研究。通过在不同温度下结合中子粉末衍射进行单晶结构分析,可以识别出系统的孪晶。因此,前一种模型描述了孪晶的平均结构。通过假设反转孪晶来精炼数据集,可以实现正确的晶体学描述(Ag2BiO3,Pnn2,a = 5.9830(8),b = 6.3239(7),c = 9.5762(13)埃,Z = 4)。在此模型中,铋有两个不同的晶体学位点,可以根据Ag2Bi3 + Bi5 + O-3进行电荷排序。对于Bi3 +和Bi5 +,BiO6-八面体的平均距离分别为2.34和2.13埃。结合价合计为3.08和5.06。室温下的这种电荷排序充分说明了该化合物的半导体行为和反磁性。此外,温度相关的中子粉末衍射(2-298 K)显示出冷却时晶格的单斜晶畸变,这是通过单晶研究(100 K)独立确认的。结构在坑中细化(a = 5.95492(10),b = 6.31001(9),c = 9.58082(13)埃,beta = 92.4823(2)度,Z = 4,T = 100 K)。除了Bi06-八面体在普通的顶点上作为铰链被氧原子倾斜外,没有观察到轻微的结构变化。斜方晶/单斜晶相变不会影响铋的电荷顺序。 (c)2006年Elsevier SAS。版权所有。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号