TY - JOUR
T1 - Polycationic Open-Shell Cyclophanes
T2 - Synthesis of Electron-Rich Chiral Macrocycles, and Redox-Dependent Electronic States
AU - Shi, Yafei
AU - Li, Chenglong
AU - Di, Jiaqi
AU - Xue, Yuting
AU - Jia, Yawei
AU - Duan, Jiaxian
AU - Hu, Xiaoyu
AU - Tian, Yu
AU - Li, Yanqiu
AU - Sun, Cuiping
AU - Zhang, Niu
AU - Xiong, Yan
AU - Jin, Tianyun
AU - Chen, Pangkuan
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/7/1
Y1 - 2024/7/1
N2 - π-Conjugated chiral nanorings with intriguing electronic structures and chiroptical properties have attracted considerable interests in synthetic chemistry and materials science. We present the design principles to access new chiral macrocycles (1 and 2) that are essentially built on the key components of main-group electron-donating carbazolyl moieties or the π-expanded aza[7]helicenes. Both macrocycles show the unique molecular conformations with a (quasi) figure-of-eight topology as a result of the conjugation patterns of 2,2’,7,7’-spirobifluorenyl in 1 and triarylamine-coupled aza[7]helicene-based building blocks in 2. This electronic nature of redox-active, carbazole-rich backbones enabled these macrocycles to be readily oxidized chemically and electrochemically, leading to the sequential production of a series of positively charged polycationic open-shell cyclophanes. Their redox-dependent electronic states of the resulting multispin polyradicals have been characterized by VT-ESR, UV/Vis-NIR absorption and spectroelectrochemical measurements. The singlet (ΔES-T=−1.29 kcal mol−1) and a nearly degenerate singlet-triplet ground state (ΔES−T(calcd)=−0.15 kcal mol−1 and ΔES−T(exp)=0.01 kcal mol−1) were proved for diradical dications 12+2⋅ and 22+2⋅, respectively. Our work provides an experimental proof for the construction of electron-donating new chiral nanorings, and more importantly for highly charged polyradicals with potential applications in chirospintronics and organic conductors.
AB - π-Conjugated chiral nanorings with intriguing electronic structures and chiroptical properties have attracted considerable interests in synthetic chemistry and materials science. We present the design principles to access new chiral macrocycles (1 and 2) that are essentially built on the key components of main-group electron-donating carbazolyl moieties or the π-expanded aza[7]helicenes. Both macrocycles show the unique molecular conformations with a (quasi) figure-of-eight topology as a result of the conjugation patterns of 2,2’,7,7’-spirobifluorenyl in 1 and triarylamine-coupled aza[7]helicene-based building blocks in 2. This electronic nature of redox-active, carbazole-rich backbones enabled these macrocycles to be readily oxidized chemically and electrochemically, leading to the sequential production of a series of positively charged polycationic open-shell cyclophanes. Their redox-dependent electronic states of the resulting multispin polyradicals have been characterized by VT-ESR, UV/Vis-NIR absorption and spectroelectrochemical measurements. The singlet (ΔES-T=−1.29 kcal mol−1) and a nearly degenerate singlet-triplet ground state (ΔES−T(calcd)=−0.15 kcal mol−1 and ΔES−T(exp)=0.01 kcal mol−1) were proved for diradical dications 12+2⋅ and 22+2⋅, respectively. Our work provides an experimental proof for the construction of electron-donating new chiral nanorings, and more importantly for highly charged polyradicals with potential applications in chirospintronics and organic conductors.
KW - Figure-of-Eight
KW - Luminescent Chiral Macrocycle
KW - Open-Shell Cyclophanes
KW - Polycations
KW - Radical Chirality
UR - http://www.scopus.com/inward/record.url?scp=85193496415&partnerID=8YFLogxK
U2 - 10.1002/anie.202402800
DO - 10.1002/anie.202402800
M3 - Article
C2 - 38411404
AN - SCOPUS:85193496415
SN - 1433-7851
VL - 63
JO - Angewandte Chemie - International Edition
JF - Angewandte Chemie - International Edition
IS - 27
M1 - e202402800
ER -