Lang Jun, Sloop David J, Lin Tien-Sung
Department of Chemistry, Washington University, St. Louis, MO 63130-4899, USA.
J Magn Reson. 2005 Oct;176(2):249-56. doi: 10.1016/j.jmr.2005.06.012.
We report a new technique to map the orientational anisotropy of paramagnetic systems without physically changing the crystal orientations in near zero-field (NZF) pulsed EPR experiments. By implementing three sets of orthogonal coils around the sample, we are ble to create a magnetic vector up to 2 mT in any three-dimensional orientation in space. In NZF region, the hyperfine tensor elements are comparable to the electronic Zeeman interaction energy, thus very rich spectral patterns can be obtained by "dialing" in a magnetic field vector without moving the sample. The technique further allows us to examine the site symmetry of organic crystals and powdered solids doped with chromophores which can be photo-excited to the triplet state by laser light. The technique is exemplified in the study of pentacene in p-terphenyl crystals.
我们报道了一种新的技术,用于在近零场(NZF)脉冲电子顺磁共振实验中绘制顺磁系统的取向各向异性,而无需物理改变晶体取向。通过在样品周围布置三组正交线圈,我们能够在空间中的任何三维取向上产生高达2 mT的磁矢量。在NZF区域,超精细张量元素与电子塞曼相互作用能相当,因此通过在不移动样品的情况下“调节”磁场矢量,可以获得非常丰富的光谱图案。该技术还使我们能够研究有机晶体和掺杂有发色团的粉末状固体的位点对称性,这些发色团可通过激光光激发到三重态。该技术在对三联苯晶体中并五苯的研究中得到了例证。