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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Photonic gratings of the metal-organic framework {Fe(bpac)[Pt(CN) _4]} with synergetic spin transition and host-guest properties
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Photonic gratings of the metal-organic framework {Fe(bpac)[Pt(CN) _4]} with synergetic spin transition and host-guest properties

机译:具有协同自旋跃迁和主客体特性的金属有机骨架{Fe(bpac)[Pt(CN)_4]}的光子光栅

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摘要

Surface-relief photonic gratings of the spin-crossover metal-organic framework {Fe(bpac)[Pt(CN)_4]} (bpac = bis(4-pyridyl)acetylene) were elaborated by the combination of a sequential assembly process and lithographic methods. Optical diffraction, surface plasmon resonance spectroscopy and Raman micro-spectroscopy were used to investigate the temperature dependence of the spin state of the iron(ii) ions and the concomitant change of the refractive index of the grating material. The refractive index change associated with the high spin (~5T) to low spin (~1A) transition was found to be as high as andDelta;n = 0.08 ± 0.005, which was attributed to the pronounced mass density difference between the two spin states. While the grating thickness (15-90 nm) had no influence on the spin-crossover properties of the gratings, the adsorption of aromatic guest molecules was found to have a substantial effect both on the spin transition temperature and the completeness of the transition.
机译:通过顺序组装工艺和光刻技术的结合,对自旋交叉金属有机骨架{Fe(bpac)[Pt(CN)_4]}(bpac =双(4-吡啶基)乙炔)的表面浮雕光子光栅进行了精细加工方法。使用光学衍射,表面等离子体共振光谱和拉曼显微光谱研究了铁离子的自旋态的温度依赖性以及光栅材料折射率的随之变化。发现与高自旋(〜5T)到低自旋(〜1A)跃迁相关的折射率变化高达Δn= 0.08±0.005,这归因于两种自旋状态之间的明显的质量密度差。虽然光栅厚度(15-90 nm)对光栅的自旋交叉特性没有影响,但发现芳族客体分子的吸附对自旋转变温度和转变的完整性都有重大影响。

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