Division of Physics, Institute of Liberal Education, Nihon University School of Medicine , Tokyo 173-8610, Japan.
Institute for Solid State Physics, The University of Tokyo , Chiba 277-8581, Japan.
J Am Chem Soc. 2015 Nov 25;137(46):14686-93. doi: 10.1021/jacs.5b08242. Epub 2015 Nov 12.
The local structure within the Co-Fe atomic array of the photoswitchable coordination polymer magnet, K0.3Co[Fe(CN)6]0.77·nH2O, is directly observed during charge transfer induced spin transition (CTIST), a solid-solid phase change, using high-resolution transmission electron microscopy (HRTEM). Along with the low-spin (LS) or thermally quenched high-spin (HS) states normally observed in CTIST solids at low temperature, slow cooling of K0.3Co[Fe(CN)6]0.77·nH2O results in an intermediate phase containing both HS and LS domains with short coherence length. By mapping individual metal-metal distances, the nanometer-scale HS domains are directly visualized within the LS array. Temperature-dependent analyses allow monitoring of HS domain coarsening along the warming branch of the CTIST, providing direct visualization of the elastic process and insight into the mechanism of phase propagation. Normally sensitive to electron beam damage, the low-temperature TEM measurements of the porous coordination polymer are enabled by using appropriate ionic liquids instead of usual conductive thin-film coatings, an approach that should find general utility in related classes of materials.
在光致变色配位聚合物磁体 K0.3Co[Fe(CN)6]0.77·nH2O 的 Co-Fe 原子阵列中,局部结构在电荷转移诱导自旋转变(CTIST)过程中,即固态-固态相变过程中,使用高分辨率透射电子显微镜(HRTEM)直接观察到。在 CTIST 固体中,低温下通常观察到低自旋(LS)或热猝灭的高自旋(HS)状态,而 K0.3Co[Fe(CN)6]0.77·nH2O 的缓慢冷却导致形成含有短相干长度的 HS 和 LS 畴的中间相。通过绘制单个金属-金属距离图,可以直接在 LS 阵列中可视化纳米级 HS 畴。温度依赖性分析允许监测 CTIST 升温分支上的 HS 畴粗化,从而直接可视化弹性过程并深入了解相传播的机制。通常对电子束损伤敏感,多孔配位聚合物的低温 TEM 测量通过使用适当的离子液体代替通常的导电薄膜涂层来实现,这种方法应该在相关材料类别中具有普遍的适用性。