Agustí Gloria, Thompson Amber L, Gaspar Ana B, Muñoz M Carmen, Goeta Andrés E, Rodríguez-Velamazán José Alberto, Castro Miguel, Burriel Ramón, Real José Antonio
Instituto de Ciencia Molecular, Universidad de Valencia, Edificios de Institutos de Paterna, 46071 Valencia, Spain.
Dalton Trans. 2008 Feb 7(5):642-9. doi: 10.1039/b711834a. Epub 2007 Nov 16.
A complete structural, calorimetric, and magnetic characterisation of the 2D coordination spin crossover polymer [Fe(pmd)(2)Cu(CN)(2)] is reported. The crystal structure has been investigated below room temperature at 180 K and 90 K, and at 30 K after irradiating the sample at low temperature with green light (lambda = 532 nm). The volume cell contraction through the thermal spin transition is only 18 A(3) which is lower than the usually observed value of around 25-30 A(3) while the average Fe-N bond distances decrease by the typical value of about 0.19 A. The structural data of the irradiated state indicate that the high spin state is well induced since the cell parameters are consistent with the data at 180 K. Calorimetric and photo-calorimetric experiments have also been performed. The entropy content for the thermal spin transition, DeltaS = 35-37 J mol(-1) K(-1) lies in the lowest range of the typical values and correlates with the low volume cell contraction. The combination of the crystallographic and calorimetric data predicts, in accordance with a mean-field approach, a linear pressure dependence of the critical temperature with a slope of 302 K GPa(-1). Magnetic measurements under pressure reveal an anomalous behaviour since the critical temperature and hysteresis do not change up to 0.22 GPa but an apparent linear dependence is obtained for higher pressures (up to 0.8 GPa) with a slope two times higher than the mean-field estimation.
报道了二维配位自旋交叉聚合物[Fe(pmd)(2)Cu(CN)(2)]的完整结构、量热和磁性表征。在室温以下,于180 K和90 K以及在低温下用绿光(λ = 532 nm)照射样品后在30 K下研究了晶体结构。通过热自旋转变的晶胞收缩仅为18 ų,低于通常观察到的约25 - 30 ų的值,而平均Fe - N键长减少了约0.19 Å的典型值。辐照态的结构数据表明,由于晶胞参数与180 K时的数据一致,因此高自旋态被很好地诱导出来。还进行了量热和光量热实验。热自旋转变的熵含量,ΔS = 35 - 37 J mol⁻¹ K⁻¹,处于典型值的最低范围,并与低晶胞收缩相关。晶体学和量热数据的结合,根据平均场方法预测,临界温度与压力呈线性关系,斜率为302 K GPa⁻¹。压力下的磁性测量显示出异常行为,因为临界温度和磁滞在高达0.22 GPa时不变,但在更高压力(高达0.8 GPa)下获得了明显的线性关系,斜率比平均场估计值高两倍。