Visualization of Stereoselective Supramolecular Polymers by Chirality-Controlled Energy Transfer

被引:88
|
作者
Sarkar, Aritra [1 ]
Dhiman, Shikha [1 ]
Chalishazar, Aditya [1 ]
George, Subi J. [1 ]
机构
[1] JNCASR, New Chem Unit, Supramol Chem Lab, Bangalore 560064, Karnataka, India
关键词
chirality; energy transfer; fluorescence; self-assembly; supramolecular chemistry; POLYMERIZATION; ORGANOGELS; COPOLYMERS; GELS; TRANSPORT; EMISSION; STRATEGY; STACKS; GROWTH; CHAIN;
D O I
10.1002/anie.201708267
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Chirality-driven self-sorting is envisaged to efficiently control functional properties in supramolecular materials. However, the challenge arises because of a lack of analytical methods to directly monitor the enantioselectivity of the resulting supramolecular assemblies. Presented herein are two fluorescent core-substituted naphthalene-diimide-based donor and acceptor molecules with minimal structural mismatch and they comprise strong self-recognizing chiral motifs to determine the self-sorting process. As a consequence, stereoselective supramolecular polymerization with an unprecedented chirality control over energy transfer has been achieved. This chirality-controlled energy transfer has been further exploited as an efficient probe to visualize microscopically the chirality driven self-sorting.
引用
收藏
页码:13767 / 13771
页数:5
相关论文
共 50 条
  • [21] Chirality-controlled spontaneous currents in spin-orbit coupled superconducting rings
    Robinson, J. W. A.
    Samokhvalov, A., V
    Buzdin, A., I
    PHYSICAL REVIEW B, 2019, 99 (18)
  • [22] RETRACTION: Supramolecular Nanotube Reactors for Production of Imine Polymers with Controlled Conformation, Size, and Chirality
    Kameta, N.
    Ding, W.
    SMALL, 2024, 20 (42)
  • [23] Crystalline Supramolecular Polymers: Dynamics, Chirality, and Function
    Stupp, Samuel, I
    Palmer, Liam C.
    Sai, Hiroaki
    ISRAEL JOURNAL OF CHEMISTRY, 2021, 61 (11-12) : 873 - 883
  • [24] Supramolecular chirality transfer in a stereodynamic catalysts
    Storch, Golo
    Trapp, Oliver
    CHIRALITY, 2018, 30 (10) : 1150 - 1160
  • [25] Carbene-catalyzed chirality-controlled site-selective acylation of saccharides
    Liu, Ying-Guo
    Zhong, Zetao
    Tang, Yuyang
    Wang, Hongling
    Vummaleti, Sai Vikrama Chaitanya
    Peng, Xi
    Peng, Peng
    Zhang, Xinglong
    Chi, Yonggui Robin
    NATURE COMMUNICATIONS, 2025, 16 (01)
  • [26] Gelation induced supramolecular chirality: chirality transfer, amplification and application
    Duan, Pengfei
    Cao, Hai
    Zhang, Li
    Liu, Minghua
    SOFT MATTER, 2014, 10 (30) : 5428 - 5448
  • [27] Ligand chirality-controlled selective formation of mono- and dinuclear copper complexes
    Zhou, XG
    Huang, JS
    Zhou, ZY
    Cheung, KK
    Che, CM
    INORGANICA CHIMICA ACTA, 2002, 331 : 194 - 198
  • [28] Chirality-Controlled Carbon Nanotubes Fabricated by Self-Assembly of Graphene Nanoribbons
    Zhang, Cun
    Peng, Zhilong
    Chen, Shaohua
    JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (33): : 19477 - 19483
  • [29] Cooperative Chirality and Sequential Energy Transfer in a Supramolecular Light-Harvesting Nanotube
    Ji, Lukang
    Sang, Yutao
    Ouyang, Guanghui
    Yang, Dong
    Duan, Pengfei
    Jiang, Yuqian
    Liu, Minghua
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58 (03) : 844 - 848
  • [30] Charge Transfer between Metal Clusters and Growing Carbon Structures in Chirality-Controlled Single-Walled Carbon Nanotube Growth
    Wang, Qiang
    Yang, Shuo-Wang
    Yang, Yanhui
    Chan-Park, Mary B.
    Chen, Yuan
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2011, 2 (09): : 1009 - 1014