Shimizu H, Okubo M, Nakamoto A, Enomoto M, Kojima N
Department of Basic Science, Graduate School of Arts and Sciences, The University of Tokyo, Komaba 3-8-1, Meguro-ku, Tokyo 153-8902, Japan.
Inorg Chem. 2006 Dec 11;45(25):10240-7. doi: 10.1021/ic061498u.
Intercalation of an organic photochromic molecule into layered magnetic systems may provide multifunctional properties such as photomagnetism. To build up a photosensitive multifunctional magnet, an organic-inorganic hybrid system coupled with a photochromic diarylethene anion, 2,2'-dimethyl-3,3'-(perfluorocyclopentene-1,2-diyl)bis(benzo[b]thiophene-6-sulfonate) (DAE), and cobalt LDHs (layered double hydroxides), Co4(OH)7(DAE)0.5.3H2O, was synthesized by the anion exchange reaction between Co2(OH)3(CH3COO).H2O and DAE. In the dark and under UV-irradiated (313 nm) conditions, Co4(OH)7(DAE)0.5.3H2O with open and closed forms of DAE were obtained, respectively. The magnetic susceptibility measurements elucidated ferromagnetic intra- and interlayer interactions and Curie temperatures of TC = 9 and 20 K for cobalt LDHs with the open and closed forms of DAE, respectively. The enhancement of the Curie temperature from 9 to 20 K by substitution of the open form of DAE with the closed form of DAE as an intercalated molecule is attributed to the delocalization of the pi-electrons in the closed form of DAE, which enhances the interlayer magnetic interaction. The enhancement of the interlayer magnetic interaction induced by the delocalization of pi-electrons in intercalated molecules is strongly supported by the fact that the Curie temperature (26.0 K) of cobalt LDHs with (E,E)-2,4-hexadienedioate having a conjugated pi-electron system is enormously higher than that (7.0 K) of the cobalt LDHs with hexanedioate. By UV irradiation at 313 nm, Co4(OH)7(DAE)0.5.3H2O shows the photoisomerization of DAE from the open form to the closed one in the solid state, which leads to the enhancement of Curie temperature.
将有机光致变色分子插入层状磁性体系中可能会提供诸如光磁等多功能特性。为构建一种光敏多功能磁体,通过Co₂(OH)₃(CH₃COO)·H₂O与2,2'-二甲基-3,3'-(全氟环戊烯-1,2-二基)双(苯并[b]噻吩-6-磺酸盐)(DAE)之间的阴离子交换反应,合成了一种与光致变色二芳基乙烯阴离子DAE和钴层状双氢氧化物Co₄(OH)₇(DAE)₀.₅·3H₂O耦合的有机-无机杂化体系。在黑暗和紫外光(313 nm)照射条件下,分别得到了具有开放和闭合形式DAE的Co₄(OH)₇(DAE)₀.₅·3H₂O。磁化率测量结果表明,具有开放和闭合形式DAE的钴层状双氢氧化物分别存在铁磁层内和层间相互作用,居里温度分别为TC = 9 K和20 K。用闭合形式的DAE取代开放形式的DAE作为插层分子,使居里温度从9 K提高到20 K,这归因于闭合形式DAE中π电子的离域,从而增强了层间磁相互作用。插层分子中π电子离域引起的层间磁相互作用增强,这一事实得到了有力支持,即具有共轭π电子体系的(E,E)-2,4-己二烯二酸钴层状双氢氧化物的居里温度(26.0 K)远高于己二酸钴层状双氢氧化物的居里温度(7.0 K)。通过313 nm的紫外光照射,Co₄(OH)₇(DAE)₀.₅·3H₂O在固态下表现出DAE从开放形式到闭合形式的光异构化,这导致居里温度升高。