Temperature-Controlled Pathway Complexity in Self-Assembly of Perylene Diimide-Polydiacetylene Supramolecule

  • Seo, Joonsik
  • Khazi, Mohammed Iqbal
  • 배광민
  • Kim, Jong-Man
Citations

WEB OF SCIENCE

28
Citations

SCOPUS

27

초록

Self-assembly process represents one of the most powerful and efficient methods for designing functional nanomaterials. For generating optimal functional materials, understanding the pathway complexity during self-assembly is essential, which involves the aggregation of molecules into thermodynamically or kinetically favored pathways. Herein, a functional perylene diimide (PDI) derivative by introducing diacetylene (DA) chains (PDI-DA) is designed. Temperature control pathway complexity with the evolution of distinct morphology for the kinetic and thermodynamic product of PDI-DA is investigated in detail. A facile strategy of UV-induced polymerization is adopted to trap and capture metastable kinetic intermediates to understand the self-assembly mechanism. PDI-DA showed two kinetic intermediates having the morphology of nanosheets and nanoparticles before transforming into the thermodynamic product having fibrous morphology. Spectroscopic studies revealed the existence of distinct H- and J-aggregates for kinetic and thermodynamic products respectively. The polymerized fibrous PDI-DA displayed reversible switching between J-aggregate and H-aggregate.

키워드

pathway complexityself-assemblyperylene diimidepolydiacetylenekinetic and thermodynamic pathwayTOPOCHEMICAL POLYMERIZATIONRECENT PROGRESSPIMOLECULESDRIVEN
제목
Temperature-Controlled Pathway Complexity in Self-Assembly of Perylene Diimide-Polydiacetylene Supramolecule
저자
Seo, JoonsikKhazi, Mohammed Iqbal배광민Kim, Jong-Man
DOI
10.1002/smll.202206428
발행일
2023-05
유형
Article; Early Access
저널명
Small
19
18
페이지
1 ~ 9

파일 다운로드