Spatiotemporal Dynamics of Aggregation-Induced Emission Enhancement Controlled by Optical Manipulation

Shun Fa Wang, Jhao Rong Lin, Fumitaka Ishiwari, Takanori Fukushima, Hiroshi Masuhara, Teruki Sugiyama*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

We present spatiotemporal control of aggregation-induced emission enhancement (AIEE) of a protonated tetraphenylethene derivative by optical manipulation. A single submicrometer-sized aggregate is initially confined by laser irradiation when its fluorescence is hardly detectable. The continuous irradiation of the formed aggregate leads to sudden and rapid growth, resulting in bright yellow fluorescence emission. The fluorescence intensity at the peak wavelength of 540 nm is tremendously enhanced with growth, meaning that AIEE is activated by optical manipulation. Amazingly, the switching on/off of the activation of AIEE is arbitrarily controlled by alternating the laser power. This result means that optical manipulation increases the local concentration, which overcomes the electrostatic repulsion between the protonated molecules, namely, optical manipulation changes the aggregate structure. The dynamics and mechanism in AIEE controlled by optical manipulation will be discussed from the viewpoint of molecular conformation and association depending on the laser power.

Original languageEnglish
Pages (from-to)7063-7068
Number of pages6
JournalAngewandte Chemie - International Edition
Volume59
Issue number18
DOIs
StatePublished - 27 Apr 2020

Keywords

  • aggregation-induced emission enhancement
  • fluorescence microspectroscopy
  • optical manipulation
  • spatiotemporal control
  • tetraphenylethene
  • PHOTON PRESSURE
  • RADIATION PRESSURE
  • EXCITED-STATE
  • LASER
  • TETRAPHENYLETHYLENE
  • FLUORESCENCE
  • ASSOCIATION
  • DERIVATIVES
  • MECHANISM
  • MICELLES

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