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等结构重原子自由基中增强的导电性和磁有序性。

Enhanced conductivity and magnetic ordering in isostructural heavy atom radicals.

作者信息

Robertson Craig M, Leitch Alicea A, Cvrkalj Kristina, Reed Robert W, Myles Daniel J T, Dube Paul A, Oakley Richard T

机构信息

Department of Chemistry, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

J Am Chem Soc. 2008 Jul 2;130(26):8414-25. doi: 10.1021/ja801070d. Epub 2008 Jun 4.

Abstract

Synthetic methods have been developed to generate the complete series of resonance-stabilized heterocyclic thia/selenazyl radicals 1a-4a. X-ray crystallographic studies confirm that all four radicals are isostructural, belonging to the tetragonal space group P42(1)m. The crystal structures consist of slipped pi-stack arrays of undimerized radicals packed about 4 centers running along the z direction, an arrangement which gives rise to a complex lattice-wide network of close intermolecular E2---E2' contacts. Variable temperature conductivity (sigma) measurements reveal an increase in conductivity with increasing selenium content, particularly so when selenium occupies the E2 position, with sigma(300 K) reaching a maximum (for E1 = E2 = Se) of 3.0 x 10(-4) S cm(-1). Thermal activation energies E(act) follow a similar profile, decreasing with increasing selenium content along the series 1a (0.43 eV), 3a (0.31 eV), 2a (0.27 eV), 4a (0.19 eV). Variable temperature magnetic susceptibility measurements indicate that all four radicals exhibit S = 1/2 Curie-Weiss behavior over the temperature range 20-300 K. At lower temperatures, the three selenium-based radicals display magnetic ordering. Radical 3a, with selenium positioned at the E1 site, undergoes a phase transition at 14 K to a weakly spin-canted (phi = 0.010 degrees) antiferromagnetic state. By contrast, radicals 2a and 4a, which both possess selenium in the E2 position, order ferromagnetically, with Curie temperatures of T(c) = 12.8 and 17.0 K, respectively. The coercive fields H(c) at 2 K of 2a (250 Oe) and 4a (1370 Oe) are much larger than those seen in conventional light atom organic ferromagnets. The transport properties of the entire series 1a-4a are discussed in the light of Extended Hückel Theory band structure calculations.

摘要

已开发出合成方法来生成完整系列的共振稳定杂环硫/硒氮基自由基1a - 4a。X射线晶体学研究证实,所有这四种自由基都是同构的,属于四方空间群P42(1)m。晶体结构由未二聚化的自由基的滑移π堆积阵列组成,这些阵列围绕沿z方向排列的4个中心堆积,这种排列产生了一个复杂的全晶格范围内紧密分子间E2---E2'接触网络。变温电导率(σ)测量表明,随着硒含量的增加,电导率升高,特别是当硒占据E2位置时,σ(300 K)达到最大值(对于E1 = E2 = Se),为3.0×10(-4) S cm(-1)。热活化能E(act)呈现类似的趋势,随着硒含量沿系列1a(0.43 eV)、3a(0.31 eV)、2a(0.27 eV)、4a(0.19 eV)增加而降低。变温磁化率测量表明,所有这四种自由基在20 - 300 K温度范围内均表现出S = 1/2居里 - 外斯行为。在较低温度下,三种含硒自由基表现出磁有序。位于E1位点的硒的自由基3a在14 K时发生相变,转变为弱自旋倾斜(φ = 0.010度)的反铁磁态。相比之下,在E2位置都含有硒的自由基2a和4a呈现铁磁有序,居里温度分别为T(c) = 12.8和17.0 K。2a(250 Oe)和4a(1370 Oe)在2 K时的矫顽场H(c)远大于传统轻原子有机铁磁体中的矫顽场。根据扩展休克尔理论能带结构计算讨论了整个系列1a - 4a的输运性质。

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