首页> 外文期刊>Physics and Chemistry of Minerals >Single-crystal EPR and DFT study of a VIAl–O−–VIAl center in jeremejevite: electronic structure and 27Al hyperfine constants
【24h】

Single-crystal EPR and DFT study of a VIAl–O−–VIAl center in jeremejevite: electronic structure and 27Al hyperfine constants

机译:jeremejevite中的VI Al–O − –VI Al中心的单晶EPR和DFT研究:电子结构和27 Al超细常数

获取原文
获取原文并翻译 | 示例
           

摘要

Single-crystal electron paramagnetic resonance (EPR) spectra of a gem-quality jeremejevite, Al6B5O15(F, OH)3, from Cape Cross, Namibia, reveal an S = 1/2 hole center characterized by an 27Al hyperfine structure arising from interaction with two equivalent Al nuclei. Spin-Hamiltonian parameters obtained from single-crystal EPR spectra at 295 K are as follows: g 1 = 2.02899(1), g 2 = 2.02011(2), g 3 = 2.00595(1); A 1/g e β e = −0.881(1) mT, A 2/g e β e = −0.951(1) mT, and A 3/g e β e = −0.972(2) mT, with the orientations of the g 3- and A 3-axes almost coaxial and perpendicular to the Al–O–Al plane; and those of the g 1- and A 1-axes approximately along the Al–Al and Al–OH directions, respectively. These results suggest that this aluminum-associated hole center represents hole trapping on a hydroxyl oxygen atom linked to two equivalent octahedral Al3+ ions, after the removal of the proton (i.e., a VIAl–O−–VIAl center). Periodic ab initio UHF and DFT calculations confirmed the experimental 27Al hyperfine coupling constants and directions, supporting the proposed structural model. The VIAl–O−–VIAl center in jeremejevite undergoes the onset of thermal decay at 300 °C and is completely bleached at 525 °C. These data obtained from the VIAl–O−–VIAl center in jeremejevite provide new insights into analogous centers that have been documented in several other minerals.
机译:纳米比亚Cape Cape的宝石品质jeremejevite Al6 B5 O15 (F,OH)3 的单晶电子顺磁共振(EPR)光谱显示S = 1/2孔中心,其特征在于与两个等效的Al核相互作用而形成的27 Al超细结构。从295 K的单晶EPR光谱获得的自旋哈密顿参数如下:g 1 = 2.02899(1),g 2 = 2.02011(2),g 3 = 2.00595 (1); A 1 / ge βe = −0.881(1)mT,A 2 / ge βe = −0.951(1) mT和A 3 / ge βe = -0.972(2)mT,且g 3 -和A 3 -轴的方向几乎同轴且垂直于Al–O–Al平面;以及分别沿着Al–Al和Al–OH方向的g 1 -和A 1 轴的那些。这些结果表明,该铝缔合的空穴中心代表了在质子去除后(即VI Al–O- < / sup> –VI 铝中心)。定期从头开始的UHF和DFT计算证实了实验的27 Al超细耦合常数和方向,从而支持了所提出的结构模型。 jeremejevite中的VI Al–O − –VI Al中心在300°C时发生热衰减,并在525°C时完全漂白。这些从jeremejevite的VI Al–O − –VI Al中心获得的数据提供了对已在其他几种矿物中记录的类似中心的新见解。

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