Xu Wei-Jian, Chen Shao-Li, Hu Zhi-Tao, Lin Rui-Biao, Su Yu-Jun, Zhang Wei-Xiong, Chen Xiao-Ming
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, China.
Dalton Trans. 2016 Mar 14;45(10):4224-9. doi: 10.1039/c5dt03481g.
A family of cyano-bridged perovskite-like coordination polymers (CPs), [(CH3)nNH(4-n)]2[KFe(CN)6] (n = 1 (1), 2 (2), 3 (3), and 4 (4)), were synthesized and characterized. The differential scanning calorimetry measurements and variable-temperature single-crystal X-ray structural analyses revealed that, owing to the deformation of the host framework as well as the dynamic transition of the guest cation between the static/ordered and dynamic/disordered states, the four CPs undergo structural phase transitions (at 429, 226, 316, and 350 K, respectively) with the symmetry breakings dependent on the symmetries of the encapsulated guest cations. The modulated differential scanning calorimetry measurement suggested that the phase transitions of 1 and 3 have more striking kinetic processes related to their drastic deformation of the host framework as well as a very significant alteration of the host-guest interaction during the phase transition. Moreover, accompanying the transitions between low- and high-temperature phases, the step-like transitions between low and high dielectric states were observed in 1-3, and the corresponding change in amplitude of the dielectric constant is dependent on the total dipole moment of each cage in the high-temperature phase. The investigation on these host-guest CPs deepens the understanding of the relationship between the dipole moment of guest cations and the dielectric behaviour of materials, shedding light on the search for new switchable molecular dielectrics.
合成并表征了一族氰基桥连的类钙钛矿配位聚合物(CPs),即[(CH3)nNH(4-n)]2[KFe(CN)6](n = 1(1)、2(2)、3(3)和4(4))。差示扫描量热法测量和变温单晶X射线结构分析表明,由于主体骨架的变形以及客体阳离子在静态/有序和动态/无序状态之间的动态转变,这四种CPs分别在429、226、316和350 K发生结构相变,其对称性破缺取决于封装客体阳离子的对称性。调制差示扫描量热法测量表明,1和3的相变具有更显著的动力学过程,这与其主体骨架的剧烈变形以及相变过程中主客体相互作用的非常显著变化有关。此外,随着低温相和高温相之间的转变,在1-3中观察到低介电态和高介电态之间的阶梯状转变,并且介电常数的相应幅度变化取决于高温相中每个笼的总偶极矩。对这些主客体CPs的研究加深了对客体阳离子偶极矩与材料介电行为之间关系的理解,为寻找新型可切换分子电介质提供了线索。