Laboratoire de Chimie de Coordination, CNRS UPR-8241 and Université de Toulouse, UPS, INP, 31077 Toulouse, France.
Small. 2011 Dec 2;7(23):3385-91. doi: 10.1002/smll.201101089. Epub 2011 Oct 14.
Nanopatterned thin films of the metal-organic framework {Fe(bpac)[Pt(CN)4]} (bpac=bis(4-pyridyl)acetylene) are elaborated by the combination of a sequential assembly process and a lithographic method. Raman microspectroscopy is used to probe the temperature dependence of the spin state of the iron(II) ions in the films (40-90 nm in thickness), and reveals an incomplete but cooperative spin transition comparable to that of the bulk material. Adsorption/desorption of pyridine guest molecules is found to have a substantial influence on the spin-crossover properties of the thin layers. This interplay between host-guest and spin-crossover properties in thin films and nanopatterns demonstrates the potential ability of using this kind of material as a microsensor.
通过顺序组装工艺和光刻法制备了金属有机骨架{Fe(bpac)[Pt(CN)4]}(bpac=双(4-吡啶基)乙炔)的纳米图案化薄膜。拉曼微光谱用于探测薄膜中(厚度为 40-90nm)铁(II)离子自旋态的温度依赖性,结果表明存在不完全但协同的自旋转变,类似于体材料的转变。发现吡啶客体分子的吸附/解吸对薄膜的自旋交叉性质有很大影响。这种薄膜和纳米图案中主客体和自旋交叉性质的相互作用证明了将这种材料用作微传感器的潜在能力。