TY - JOUR
T1 - Supramolecular scaffold–directed two-dimensional assembly of pentacene into a configuration to facilitate singlet fission
AU - Fukumitsu, Masato
AU - Fukui, Tomoya
AU - Shoji, Yoshiaki
AU - Kajitani, Takashi
AU - Khan, Ramsha
AU - Tkachenko, Nikolai V.
AU - Sakai, Hayato
AU - Hasobe, Taku
AU - Fukushima, Takanori
N1 - Publisher Copyright:
Copyright © 2024 The Authors
PY - 2024/9/13
Y1 - 2024/9/13
N2 - Molecular assemblies featuring two-dimensionality have attracted increasing attention, whereas such structures are difficult to construct simply relying on spontaneous molecular assembly. Here, we present two-dimensional assemblies of acene chromophores achieved using a tripodal triptycene supramolecular scaffold, which have been shown to exhibit a strong ability to assemble molecular and polymer motifs two-dimensionally. We designed pentacene and anthracene derivatives sandwiched by two triptycene units. These compounds assemble into expected two-dimensional structures, with the pentacene chromophores having both sufficient overlap to cause singlet fission and space for conformational change to facilitate the dissociation of a triplet pair into free triplets, which is not the case for the anthracene analog. Detailed spectroscopic analysis revealed that the pentacene chromophore in the assembly undergoes singlet fission with a quantum yield of 88 ± 5%, giving rise to triplet pairs, from which free triplets are efficiently generated (ΦT = 130 ± 8.8%). This demonstrates the utility of the triptycene-based scaffold to design functional π-electronic molecular assemblies.
AB - Molecular assemblies featuring two-dimensionality have attracted increasing attention, whereas such structures are difficult to construct simply relying on spontaneous molecular assembly. Here, we present two-dimensional assemblies of acene chromophores achieved using a tripodal triptycene supramolecular scaffold, which have been shown to exhibit a strong ability to assemble molecular and polymer motifs two-dimensionally. We designed pentacene and anthracene derivatives sandwiched by two triptycene units. These compounds assemble into expected two-dimensional structures, with the pentacene chromophores having both sufficient overlap to cause singlet fission and space for conformational change to facilitate the dissociation of a triplet pair into free triplets, which is not the case for the anthracene analog. Detailed spectroscopic analysis revealed that the pentacene chromophore in the assembly undergoes singlet fission with a quantum yield of 88 ± 5%, giving rise to triplet pairs, from which free triplets are efficiently generated (ΦT = 130 ± 8.8%). This demonstrates the utility of the triptycene-based scaffold to design functional π-electronic molecular assemblies.
UR - https://www.scopus.com/pages/publications/85204167302
UR - https://www.scopus.com/pages/publications/85204167302#tab=citedBy
U2 - 10.1126/sciadv.adn7763
DO - 10.1126/sciadv.adn7763
M3 - Article
C2 - 39270030
AN - SCOPUS:85204167302
SN - 2375-2548
VL - 10
JO - Science Advances
JF - Science Advances
IS - 37
M1 - eadn7763
ER -