首页> 外文学位 >LOW-FIELD EPR STUDIES OF OPTICALLY EXCITED AROMATIC TRIPLETS ORIENTED IN SINGLE-CRYSTAL HOSTS (LEAST-SQUARES, CRYSTAL-FIELD, ZERO-FIELD SPLITTING).
【24h】

LOW-FIELD EPR STUDIES OF OPTICALLY EXCITED AROMATIC TRIPLETS ORIENTED IN SINGLE-CRYSTAL HOSTS (LEAST-SQUARES, CRYSTAL-FIELD, ZERO-FIELD SPLITTING).

机译:在单晶体主机(最小二乘,晶体场,零场分裂)中定向激发的光学三元组的低场EPR研究。

获取原文
获取原文并翻译 | 示例

摘要

EPR studies of aromatic hydrocarbons in their phosphorescent state, present as dilute guests in substitutional single-crystals, were conducted at magnetic fields sufficiently low that the Zeeman interaction was only a small perturbation of the intrinsic dipole-dipole interaction between the triplet electrons. This physical situation enabled high precision determinations of the zero-field splittings (ZFS) by direct extrapolation, as well as high resolution measurements of closely spaced resonance absorptions by crystal-field inequivalent triplets.;Four classes of molecular mixed-crystals were examined, each manifesting crystal-field inequivalent triplets due to a different type of guest-host interaction. For p-terphenyl host crystals, the multiplicity of the crystal-field inequivalent triplets exceeded the number of crystallographically inequivalent substitutional host sites both above and below the 193.3(0.2) K phase transition, and was attributed to multiple guest orientations in each case. In contrast, multiplet structure observed with diphenylacetylene host crystals is consistent with isomorphic guest substitution at crystallographically inequivalent sites. Studies of substituent effects on the ZFS of a series of methyl-substituted and peri-bridged naphthalenes uncovered multiplet structure arising from (1) crystal-field interactions of various magnitudes at different sites of certain guests due to crystallographic inequivalence of the adjacent methyl groups of durene, and (2) a double-well potential from the intermolecular effects of the durene methyl-group librations. Finally, preliminary investigations of the composition-dependence of the ZFS in binary host systems forming a continuous series of solid solutions revealed unusually complex multiplet structure with dibenzofuran hosts, and led to the discovery of disorder in the crystal structure of dibenzofuran.;Improvements in the experimental apparatus and statistical methods developed in this research increased the ultimate precision of ZFS determinations to the order of 0.001 MHz, which is generally 2-4 orders of magnitude more precise than achieved by other contemporary magnetic resonance methods. Furthermore, a new iterative weighted least-squares technique, based in part upon recent work at NBS, was used to calculate the fine structure parameters from the ZFS.
机译:在足够低的磁场下进行磷光状态的芳烃的EPR研究,这些芳烃以稀客体形式存在于替代单晶中,以至于塞曼相互作用仅是三重态电子之间固有的偶极-偶极相互作用的小扰动。这种物理情况使得可以通过直接外推法高精度确定零场分裂(ZFS),并通过晶体场不等价三重态对高分辨率共振吸收进行了高分辨率测量;检查了四类分子混合晶体,每种由于来宾与宿主之间的相互作用类型不同,因此显示出晶体场不等价的三重态。对于对三联苯主体晶体,在193.3(0.2)K相变以上和以下,晶体场不等价三重态的多样性超过了晶体学上不等价的取代主体位点的数量,并且在每种情况下均归因于多个客体取向。相反,在二苯乙炔主体晶体中观察到的多重结构与在结晶学上不等价的位点上的同构客体取代相一致。研究一系列甲基取代和桥联萘对ZFS的取代基影响,发现了多重结构,这是由于(1)在某些客体的不同位点上由于邻位甲基的晶体学不等式而引起的各种幅度的晶体-场相互作用引起的都灵,以及(2)都灵甲基基团释放的分子间作用具有双阱潜力。最后,对形成连续系列固溶体的二元宿主系统中ZFS的成分依赖性的初步研究显示,二苯并呋喃主体具有异常复杂的多重结构,并导致了二苯并呋喃晶体结构的无序发现。在这项研究中开发的实验设备和统计方法将ZFS测定的最终精度提高到0.001 MHz的数量级,通常比其他现代磁共振方法获得的精度高2-4个数量级。此外,部分基于国家统计局的最新工作的新的迭代加权最小二乘技术被用于从ZFS计算精细结构参数。

著录项

  • 作者

    LUNDSTEDT, ALAN PAUL.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Physical chemistry.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 538 p.
  • 总页数 538
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
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