Matsumoto Takuya, Kamada Yohsuke, Sugimoto Toyonari, Tada Toshiji, Noguchi Satoru, Nakazumi Hiroyuki, Kawakami Takashi, Yamaguchi Kizashi, Shiro Motoo
Research Institute for Advanced Science and Technology, Osaka Prefecture University, Osaka 599-8570, Japan.
Inorg Chem. 2003 Dec 29;42(26):8638-45. doi: 10.1021/ic0300971.
The reaction of a new donor molecule having a planar but largely bent skeleton, bis(methylthio)tetrathiafulvalenothioquinone-1,3-dithiocarbonatodithiolemethide (1), with CuBr(2) in CH(3)CN/CS(2) afforded a black-colored crystal with a formula of 1(4).CuBr(4).2CuBr(3). In the crystal 1 molecules are one-dimensionally stacked to form half-cut pipelike columns, which are arranged to construct two different shapes of channels included by a one-dimensional array of CuBr(4)(2)(-) ions and a bibromide-bridged linear chain of CuBr(3)(-) ions with a square-pyramidal geometry at the Cu atom, CuBr(3)(-)(), respectively. The room-temperature electrical conductivity on the single crystal of 1(4).CuBr(4).2CuBr(3) was 2.0 x 10(-)(2) S cm(-)(1), and the temperature dependence of electrical conductivity was semiconducting with a large activation energy of 160 meV. The interactions between the neighboring Cu(II) d spins in the one-dimensional S = 1/2 spin systems due to CuBr(4)(2)(-) ions and CuBr(3)(-) ions in CuBr(3)(-)() were both antiferromagnetic, and the magnitudes were moderate (Weiss temperature, THETAV; = -18 K) in the former spin system and fairly large (coupling constant, J/k(B) = -120 K) in the latter spin system, which was in marked contrast to a moderate and ferromagnetic CuBr(3)(-)() chain in the cyclohexylammonium salt already known.
一种具有平面但大部分弯曲骨架的新型供体分子,双(甲硫基)四硫富瓦烯硫代醌 - 1,3 - 二硫代碳酸二硫代亚甲基化物(1),与CuBr₂在CH₃CN/CS₂中反应,得到一种黑色晶体,其化学式为1(4).CuBr₄.2CuBr₃。在晶体中,1分子一维堆叠形成半切管状柱,这些柱排列形成由一维CuBr₄²⁻离子阵列和具有方形金字塔几何构型的CuBr₃⁻离子的双溴化物桥连线性链CuBr₃⁻分别包含的两种不同形状的通道。1(4).CuBr₄.2CuBr₃单晶在室温下的电导率为2.0×10⁻² S cm⁻¹,电导率的温度依赖性为半导体性质,具有160 meV的大激活能。由于CuBr₃⁻中的CuBr₄²⁻离子和CuBr₃⁻离子,一维S = 1/2自旋系统中相邻Cu(II) d自旋之间的相互作用都是反铁磁性的,前者自旋系统中的大小适中(魏斯温度,ΘV = -18 K),后者自旋系统中相当大(耦合常数,J/kB = -120 K),这与已知的环己基铵盐中的适度铁磁性CuBr₃⁻链形成明显对比。