Laboratoire National des Champs Magnétiques Intenses, UPR CNRS 3228, Grenoble, France.
Chem Soc Rev. 2011 Jun;40(6):3297-312. doi: 10.1039/c1cs15012j. Epub 2011 Mar 31.
In this critical review, it is shown how the introduction of chirality and the control of the absolute configurations of chiral elements in molecular magnets allow obtaining enantiopure chiral magnets (ECM), an archetype of multifunctional materials. This task has been recognised as a major challenge for both chemists and physicists of molecular magnetism. To reach this goal, the former have combined the rational approaches towards molecular-based magnets and of enantiopure metal-organic frameworks. They have used enantiopure stable radicals, ligands from the chiral pool, enantiopure coligands associated with achiral connectors or enantioselective self-assembly to successfully reach their synthetic targets. They were motivated by the will to obtain suitable systems for the experimental demonstration of the influence of enantiomeric purity on the physico-chemical properties. This influence can be found in the magnetic properties themselves but, most interestingly, in the coexistence and interaction between the properties arising from controlled non-centrosymmetry. Thus the combination of natural circular dichroism, second harmonic generation or ferroelectricity with long-range magnetic ordering can give birth to new properties like magneto-chiral dichroism, magnetisation induced second harmonic generation or multiferroicity. The two former synergetic effects have already been demonstrated in enantiopure chiral magnets. The third one remains a challenging target that can be reached by adapting strategies developed towards enantiopure molecular ferroelectrics (119 references).
在这篇评论中,我们展示了如何在分子磁体中引入手性和控制手性元素的绝对构型,从而获得对映纯手性磁体(ECM),这是多功能材料的典型范例。这一任务被认为是分子磁学领域的化学家与物理学家共同面临的重大挑战。为了实现这一目标,化学家们将基于分子的磁体和对映纯金属有机框架的合理方法结合起来。他们使用了对映纯稳定自由基、手性池中的配体、与非手性连接体结合的对映纯共配体或对映选择性自组装,成功地实现了他们的合成目标。他们的动机是获得合适的系统,以实验证明对映体纯度对物理化学性质的影响。这种影响不仅可以在磁性质本身中发现,而且在控制非中心对称产生的性质的共存和相互作用中更为有趣。因此,将天然圆二色性、二次谐波产生或铁电性与远程磁有序相结合,可以产生新的性质,如磁手性二色性、磁化诱导二次谐波产生或多铁性。前两种协同效应已经在对映纯手性磁体中得到了证明。第三种效应仍然是一个具有挑战性的目标,可以通过适应针对对映纯分子铁电体开发的策略来实现(119 篇参考文献)。