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Synthesis of 4-substituted azopyridine-functionalized Ni(II)-porphyrins as molecular spin switches

机译:作为分子旋转开关的4-取代的氮吡啶官能化Ni(II)-卟啉的合成

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摘要

We present the synthesis and the spin switching efficiencies of Ni(II)-porphyrins substituted with azopyridines as covalently attached photoswitchable ligands. The molecules are designed in such a way that the azopyridines coordinate to the Ni ion if the azo unit is in cis configuration. For steric reasons no intramolecular coordination is possible if the azopyridine unit adopts the trans configuration. Photoisomerization of the azo unit between cis and trans is achieved upon irradiation with 505 nm (trans→cis) and 435 nm (cis→trans). Concurrently with the isomerization and coordination/decoordination, the spin state of the Ni ion switches between singlet (low-spin) and triplet (high-spin). Previous studies have shown that the spin switching efficiency is strongly dependent on the solvent and on the substituent at the 4-position of the pyridine unit. We now introduced thiol, disulfide, thioethers, nitrile and carboxylic acid groups and investigated their spin switching efficiency.
机译:我们介绍了Ni(II) - 用氮吡啶代替的Ni(II)-酰基因的合成和旋转切换效率,如共价附着的光学性配体。如果偶氮单元处于CIS配置,则分子设计成使得唑吡啶与Ni离子坐标。出于空间原因,如果氮吡啶单元采用反式构型,则可以没有分子内配位。在用505nm(Trans→CIS)和435nm(CIS→Trans)的照射时,在CIS和Trans之间的偶氮单元的光象化。与异构化和协调/解构同时,单次(低旋转)和三重态(高旋转)之间的Ni离子开关的旋转状态。以前的研究表明,旋转切换效率强烈依赖于溶剂和吡啶单元4-位的取代基。我们现在引入了硫醇,二硫化物,硫醚,腈和羧酸基团,并研究了它们的旋转切换效率。

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