光电开关
旋转交叉
背景(考古学)
自旋态
材料科学
超材料
渡线
光子学
纳米技术
化学物理
凝聚态物理
化学
物理
计算机科学
光电子学
光化学
古生物学
人工智能
生物
作者
Jean‐François Létard,Philippe Guionneau,Olivier Nguyen,José Sánchez Costa,Silvia Marcén,Guillaume Chastanet,Mathieu Marchivie,Laurence Goux‐Capes
标识
DOI:10.1002/chem.200500112
摘要
Materials presenting a stable and reversible switch of physical properties in the solid state are of major interest either for fundamental interests or potential industrial applications. In this context, the design of metal complexes showing a light-induced crossover from one spin state to another, leading to a major change of magnetic and optical properties, is probably one of the most appealing challenges. The so-denoted spin-crossover materials undergo, in some cases, a reversible photoswitch between two magnetic states, but, unfortunately, lifetimes of the photomagnetic states for compounds known so far are long enough only at low temperatures; this prohibits any applications. We have measured and collected the temperatures above which the photomagnetic effect disappears for more than sixty spin-crossover compounds. On the basis of this large data base, a correlation between the nature of the coordination sphere of the metal and the photomagnetic lifetime can be drawn. Such correlation allows us to propose here a general guideline for the rational design of materials with long-lived photomagnetic lifetimes. This result clearly opens the way towards room-temperature photonic materials, based on the spin-crossover phenomenon, which will be of great interest for future communication devices.
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