Sinha Narayan, Yaltseva Polina, Wenger Oliver S
Department of Chemistry, University of Basel, St. Johanns-Ring 19, 4056, Basel, Switzerland.
Angew Chem Int Ed Engl. 2023 Jul 24;62(30):e202303864. doi: 10.1002/anie.202303864. Epub 2023 May 4.
The expansion of d-orbitals as a result of metal-ligand bond covalence, the so-called nephelauxetic effect, is a well-established concept of coordination chemistry, yet its importance for the design of new photoactive complexes based on first-row transition metals is only beginning to be recognized. Until recently, much focus has been on optimizing the ligand field strength, coordination geometries, and molecular rigidity, but now it becomes evident that the nephelauxetic effect can be a game changer regarding the photophysical properties of 3d metal complexes in solution at room temperature. In Cr and Mn complexes with the d valence electron configuration, the nephelauxetic effect was exploited to shift the well-known ruby-like red luminescence to the near-infrared spectral region. In Fe and Co complexes with the low-spin d electron configuration, charge-transfer excited states were stabilized with respect to detrimental metal-centered excited states, to improve their properties and to enhance their application potential. In isoelectronic (3d ) isocyanide complexes of Cr and Mn , the nephelauxetic effect is likely at play as well, enabling luminescence and other favorable photoreactivity. This minireview illustrates the broad applicability of the nephelauxetic effect in tailoring the photophysical and photochemical properties of new coordination compounds made from abundant first-row transition metals.
由于金属 - 配体键的共价性导致的d轨道扩展,即所谓的“光谱化学序列效应”,是配位化学中一个已确立的概念,然而其对于基于第一行过渡金属的新型光活性配合物设计的重要性才刚刚开始被认识到。直到最近,人们大多关注于优化配体场强度、配位几何结构和分子刚性,但现在很明显,光谱化学序列效应在室温下溶液中3d金属配合物的光物理性质方面可能是一个改变游戏规则的因素。在具有d价电子构型的Cr和Mn配合物中,利用光谱化学序列效应将著名的类似红宝石的红色发光转移到近红外光谱区域。在具有低自旋d电子构型的Fe和Co配合物中,相对于有害的以金属为中心的激发态,电荷转移激发态得到了稳定,以改善它们的性质并增强其应用潜力。在Cr和Mn的等电子(3d)异腈配合物中,光谱化学序列效应可能也在起作用,从而实现发光和其他有利的光反应性。这篇微型综述说明了光谱化学序列效应在定制由丰富的第一行过渡金属制成的新型配位化合物的光物理和光化学性质方面的广泛适用性。