Ito Hiroshi, Suzuki Daichi, Watanabe Harutaka, Tanaka Hisaaki, Kuroda Shin-ichi, Umemiya Masamichi, Kobayashi Norihito, Goto Makoto, Sugiura Ken-ichi, Miyasaka Hitoshi, Takaishi Shinya, Kajiwara Takashi, Yamashita Masahiro, Ohmichi Eiji, Osada Toshihito
Department of Applied Physics, Nagoya University, Chikusa-ku, Nagoya, 464-8603, Japan.
J Am Chem Soc. 2007 Jul 11;129(27):8510-8. doi: 10.1021/ja070672q. Epub 2007 Jun 16.
New charge-transfer salts based on an unsymmetrical donor DMET [dimethyl(ethylenedithio)diselenadithiafulvalene] and metal halide anions (DMET)4MIICl4(TCE)2 (M = Mn, Co, Cu, Zn; TCE = 1,1,2-trichloroethane) have been synthesized and characterized by transport and magnetic measurements. The crystal structures of the DMET salts are isostructural, consisting of a quasi-one-dimensional stack of DMET and insulating layers containing metal halide anions and TCE. Semimetallic band structures are calculated by the tight-binding approximation. Metal-insulator transitions are observed at TMI = 25, 15, 5-20, and 13 K for M = Mn, Co, Cu, and Zn, respectively. The M = Cu salt exhibits anisotropic conduction at ambient pressure, being semiconducting in the intralayer current direction but metallic for the interplane current direction, down to T(MI). The metal-insulator transitions are suppressed under pressure. In the M = Co and Zn salts, large magnetoresistances with hysteresis are observed at low temperatures, on which Shubnikov-de Haas oscillations are superposed above 30 T. In the M = Cu salt, no hysteresis is observed but clear Shubnikov-de Haas oscillations are observed. The magnetoresistance is small and monotonic in the M = Mn salt. Paramagnetic susceptibilities of the spins of the magnetic ions are observed for the M = Mn, Co, and Cu salts with small negative Weiss temperatures of approximately 1 K. In the nonmagnetic M = Zn salt, Pauli-like pi-electron susceptibility that vanishes at TMI is observed. The ground state of the pi-electron system is understood as being a spin density wave state caused by imperfect nesting of the Fermi surfaces. In this pi-electron system, the magnetic ions of the M = Mn, Co, and Cu salts interact differently, exhibiting a variety of transport behaviors.
基于不对称供体DMET [二甲基(乙二硫基)二硒二硫富瓦烯]和金属卤化物阴离子的新型电荷转移盐(DMET)4MIICl4(TCE)2(M = Mn、Co、Cu、Zn;TCE = 1,1,2 - 三氯乙烷)已被合成,并通过输运和磁性测量进行了表征。DMET盐的晶体结构是同构的,由DMET的准一维堆叠和包含金属卤化物阴离子及TCE的绝缘层组成。通过紧束缚近似计算了半金属能带结构。对于M = Mn、Co、Cu和Zn,分别在TMI = 25、15、5 - 20和13 K时观察到金属 - 绝缘体转变。M = Cu的盐在环境压力下表现出各向异性传导,在层内电流方向为半导体,但在面间电流方向直至T(MI)为金属。金属 - 绝缘体转变在压力下受到抑制。在M = Co和Zn的盐中,在低温下观察到具有磁滞的大磁电阻,在30 T以上叠加有舒布尼科夫 - 德哈斯振荡。在M = Cu的盐中,未观察到磁滞,但观察到清晰的舒布尼科夫 - 德哈斯振荡。M = Mn的盐中磁电阻小且单调。对于M = Mn、Co和Cu的盐,观察到磁性离子自旋的顺磁磁化率,其负魏斯温度约为1 K。在非磁性的M = Zn盐中,观察到在TMI时消失的类泡利π电子磁化率。π电子系统的基态被理解为由费米面不完全嵌套引起的自旋密度波态。在这个π电子系统中,M = Mn、Co和Cu盐的磁性离子相互作用不同,表现出各种输运行为。