Selective photoinduced charge separation in perylenediimide-pillar[5]arene rotaxanes

轮烷 光诱导电子转移 分子 接受者 光诱导电荷分离 材料科学 光化学 电子转移 结晶学 化学 超分子化学 有机化学 人工光合作用 物理 光催化 凝聚态物理 催化作用
作者
Nicholas Pearce,Katherine E. A. Reynolds,Surajit Kayal,Xue Z. Sun,E. Stephen Davies,Ferdinando Malagreca,Christian J. Schürmann,Sho Itô,Akihito Yamano,Stephen P. Argent,Michael W. George,Neil R. Champness
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:13 (1) 被引量:16
标识
DOI:10.1038/s41467-022-28022-3
摘要

Abstract The ability to control photoinduced charge transfer within molecules represents a major challenge requiring precise control of the relative positioning and orientation of donor and acceptor groups. Here we show that such photoinduced charge transfer processes within homo- and hetero-rotaxanes can be controlled through organisation of the components of the mechanically interlocked molecules, introducing alternative pathways for electron donation. Specifically, studies of two rotaxanes are described: a homo[3]rotaxane, built from a perylenediimide diimidazolium rod that threads two pillar[5]arene macrocycles, and a hetero[4]rotaxane in which an additional bis(1,5-naphtho)-38-crown-10 (BN38C10) macrocycle encircles the central perylenediimide. The two rotaxanes are characterised by a combination of techniques including electron diffraction crystallography in the case of the hetero[4]rotaxane. Cyclic voltammetry, spectroelectrochemistry, and EPR spectroscopy are employed to establish the behaviour of the redox states of both rotaxanes and these data are used to inform photophysical studies using time-resolved infra-red (TRIR) and transient absorption (TA) spectroscopies. The latter studies illustrate the formation of a symmetry-breaking charge-separated state in the case of the homo[3]rotaxane in which charge transfer between the pillar[5]arene and perylenediimide is observed involving only one of the two macrocyclic components. In the case of the hetero[4]rotaxane charge separation is observed involving only the BN38C10 macrocycle and the perylenediimide leaving the pillar[5]arene components unperturbed.
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