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Orbital-free photophysical descriptors to predict directional excitations in metal-based photosensitizers

机译:无轨道的光物理描述符,以预测金属的光敏剂中的定向激发

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The development of dye-sensitized solar cells, metalloenzyme photocatalysis or biological labeling heavily relies on the design of metal-based photosensitizes with directional excitations. Directionality is most often predicted by characterizing the excitations manually via canonical frontier orbitals. Although widespread, this traditional approach is, at the very least, cumbersome and subject to personal bias, as well as limited in many cases. Here, we demonstrate how two orbital-free photophysical descriptors allow an easy and straightforward quantification of the degree of directionality in electron excitations using chemical fragments. As proof of concept we scrutinize the effect of 22 chemical modifications on the archetype [Ru(bpy) _(3) ] ~(2+) with a new descriptor coined “substituent-induced exciton localization” (SIEL), together with the concept of “excited-electron delocalization length” (EEDL _( n ) ). Applied to quantum ensembles of initially excited singlet and the relaxed triplet metal-to-ligand charge-transfer states, the SIEL descriptor allows quantifying how much and whereto the exciton is promoted, as well as anticipating the effect of single modifications, e.g. on C-4 atoms of bpy units of [Ru(bpy) _(3) ] ~(2+) . The general applicability of SIEL and EEDL _( n ) is further established by rationalizing experimental trends through quantification of the directionality of the photoexcitation. We thus demonstrate that SIEL and EEDL descriptors can be synergistically employed to design improved photosensitizers with highly directional and localized electron-transfer transitions.
机译:染料敏化太阳能电池的发展,金属酶光催化剂或生物标记严重依赖于具有定向激发的金属的光敏的设计。通过规范前沿轨道手动表征激发,最常预测方向性。虽然普遍存在,但这种传统的方法是至少繁琐的,并且受到个人偏见的影响,以及许多情况下有限。在这里,我们展示了一种使用化学碎片的电子激发中的方向性程度的简单方便地进行了两种无轨道的光学药物描述。作为概念证明,我们用新描述符与概念一起仔细仔细审查22种化学修饰对原型[Ru(BPY)_(3)]〜(2+)的效果[Ru(BPY)_(3)]〜(2+)(SIEL),以及概念“激发 - 电子临床化长度”(EEDL _(n))。初始激发态的量子集合和弛豫三联金属金属 - 配体电荷转移状态,Siel描述符允许量化激子促进的多少和whereto,以及预期单个修改的效果,例如, [Ru(BPY)_(3)]〜(2+)的BPY单元的C-4原子。通过定量光透明的方向性来合理化实验趋势,进一步建立SIEL和EEDL _(n)的一般适用性。因此,我们证明SIEL和EEDL描述符可以协同用来设计具有高方向和局部电子转移过渡的改进的光敏剂。

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