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自旋交叉配合二芳基乙烯:在室温下溶液中磁性性质的高效光致开关。

Spin crossover meets diarylethenes: efficient photoswitching of magnetic properties in solution at room temperature.

机构信息

Department of Chemistry and Pharmacy, Friedrich-Alexander-Universität Erlangen-Nürnberg , Egerlandstrasse 1, 91058 Erlangen, Germany.

出版信息

Inorg Chem. 2013 Oct 7;52(19):11585-92. doi: 10.1021/ic401960x. Epub 2013 Sep 24.

Abstract

A photoisomerizable diarylethene-derived ligand, phen*, has been successfully introduced into a spin-crossover iron(II) complex, [Fe(H2B(pz)2)2phen*] (1; pz =1-pyrazolyl). A ligand-based photocyclization (photocycloreversion) in 1 modifies the ligand field, which, in turn, results in a highly efficient paramagnetic high-spin → diamagnetic low-spin (low-spin → high-spin) transition at the coordinated Fe(II) ion. The reversible photoswitching of the spin states, and thus the associated magnetic properties, has been performed in solution at room temperature and has been directly monitored by measuring the magnetic susceptibility via the Evans method. The observed spin-state photoconversion in 1 exceeds 40%, which is the highest value for spin-crossover molecular switches in solution at room temperature reported to date. The photoexcited state is extraordinarily thermally stable, showing a half-time of about 18 days in solution at room temperature. Because of the outstanding photophysical properties of diarylethenes, including single-crystalline photochromism, molecular switch 1 may offer a promising platform for controlling the magnetic properties in the solid state and ultimately at the single-molecule level with light at room temperature.

摘要

一种光致可异构化的二芳基乙烯衍生配体 phen* 已成功引入自旋交叉铁(II)配合物 [Fe(H2B(pz)2)2phen*](1;pz = 1-吡唑基)。1 中的配体基光环化(光环异构化)修饰了配体场,进而导致配位的 Fe(II)离子发生高效的顺磁高自旋→反磁低自旋(低自旋→高自旋)转变。在室温下的溶液中可以进行自旋态的可逆光开关,并且可以通过 Evans 方法测量磁化率直接监测相关的磁性质。在 1 中观察到的自旋态光转换超过 40%,这是迄今为止报道的室温下溶液中自旋交叉分子开关的最高值。光激发态具有非凡的热稳定性,在室温下的溶液中半衰期约为 18 天。由于二芳基乙烯的出色光物理性质,包括单晶光致变色性,分子开关 1 可能为在室温下用光照控制固态和最终单分子水平的磁性质提供了有前途的平台。

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