PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 12, 2026ChemNanoMat0 citations

The Structural Regulation, Luminence Mechanism of AIE‐CDs, and Its Applications

View Full Paper
YGYan GaoXJXilang JinLDLiu Ding

Key Points

  • This research focuses on improving the luminescence performance of aggregate-induced emission carbon dots (AIE-CDs) and understanding their mechanisms and applications.
  • Analyzed the mechanisms of AIE-CDs including RIM and CEE.
  • Investigated the role of various precursors such as organic acids, amines, and phenols on AIE-CD properties.
  • Described applications in anti-counterfeiting, LED/WLED, and biological imaging.
  • Demonstrated that organic acid precursors enhance aggregated fluorescence by restricting surface molecular movement.
  • Showed that nitrogen doping from organic amines leads to emission redshift and improved AIE effect.
  • Explained that phenolic compounds during pyrolysis form conjugated carbon nuclei, suppressing non-radiative transitions.

Abstract

The luminescence performance of aggregate‐induced emission carbon dots (AIE‐CDs) in solid or aggregate states has been significantly improved, showing great potential in fields such as anti‐counterfeiting, LED/WLED, and biological imaging, etc. The research progress and common mechanisms (RIM, CEE, and surface state and nuclear state co‐emit light) of AIE‐CDs were introduced. Based on the mechanism analysis of AIE‐CDs, the three types of precursors, such as organic acids, organic amines, and organic phenols, endow AIE‐CDs with unique properties. The organic acid precursors often participate in reactions as carbon sources and restrict molecular movement on their surfaces, enhancing aggregated fluorescence. Organic amine precursors can provide nitrogen doping for AIE‐CDs, which introduce local positive charge and enhancing electrostatic interactions, leading to emission redshift and generate AIE. Phenolic compounds are prone to condensation polymerization to form highly conjugated carbon nuclei during pyrolysis or solvothermal reactions. By constructing carbon nuclei with a rigid conjugated system, the non‐radiative transition is suppressed, and the AIE effect enhances. The applications of specific AIE‐CDs are described. Therefore, a suitable precursor plays an important role in the preparation of high‐performance AIE‐CDs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/6a02c394ce8c8c81e9640eaehttps://doi.org/10.1002/cnma.202600005
Ask AI
Helpful
Bookmark
Share
View Full Paper