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介子自旋光谱研究盘状液晶 HAT6。

Muon spin spectroscopy of the discotic liquid crystal HAT6.

机构信息

ISIS Facility, STFC Rutherford Appleton Laboratory, Chilton Didcot, UK.

出版信息

Phys Chem Chem Phys. 2010 Sep 7;12(33):9900-8. doi: 10.1039/c004161k. Epub 2010 Jun 9.

Abstract

Avoided level crossing muon spin resonance (ALC-muSR) has been used to study the cyclohexadienyl-type radicals produced by the addition of muonium (Mu) to the discotic liquid crystal HAT6 (2,3,6,7,10,11-hexahexyloxytriphenylene) in the crystalline (Cr) phase, the hexagonal columnar mesophase (Col(h)) and isotropic (I) phase. In the Cr phase unpaired electron spin density can be transferred from the radical to neighboring HAT6 molecules depending on the overlap of their pi-systems and hence on the relative orientation of the triphenylene rings. The two Delta(1) resonances in the ALC-muSR spectra of the Cr phase indicate that the neighboring HAT6 molecules have two preferred orientations with respect to the radical: one which results in negligible spin density transfer and a second where 17% of the unpaired spin density is transferred. The ALC-muSR spectra in Col(h) and I phases are substantially different from those of the Cr phase in that there are two narrow resonances superimposed on an extremely broad and intense resonance. The narrow resonances are due to highly mobile radicals located in the aliphatic region between the columns and the broad resonance is due to radicals incorporated within the columns of HAT6 molecules. The large width and amplitude of this resonance indicates that the radicals within the columns are undergoing rapid electron spin relaxation but the mechanism that causes this relaxation is unknown.

摘要

避免水平交叉的 mu 子自旋共振 (ALC-muSR) 已被用于研究通过 muonium (Mu) 加成到盘状液晶 HAT6(2,3,6,7,10,11-六己氧基三联苯)中产生的环己二烯型自由基,在结晶 (Cr) 相、六方柱状中间相 (Col(h)) 和各向同性 (I) 相中。在 Cr 相中,未配对的电子自旋密度可以从自由基转移到相邻的 HAT6 分子,这取决于它们的 pi 体系的重叠,因此取决于三联苯环的相对取向。Cr 相的 ALC-muSR 谱中的两个 Delta(1)共振表明,相邻的 HAT6 分子相对于自由基有两种优先取向:一种导致自旋密度转移可以忽略不计,另一种导致 17%的未配对自旋密度转移。Col(h)相和 I 相中的 ALC-muSR 谱与 Cr 相的谱显著不同,因为在极其宽而强的共振上叠加了两个窄共振。窄共振归因于位于柱之间脂肪族区域的高度移动的自由基,而宽共振归因于 HAT6 分子柱内的自由基。这个共振的大宽度和幅度表明柱内的自由基正在经历快速的电子自旋弛豫,但导致这种弛豫的机制尚不清楚。

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