Abstract
Two-photon fluorescence photosensitizers (TP-FPSs) with long fluorescence lifetime (tF) and high singlet oxygen quantum yield (κδ) have attracted ever-growing attention as novel theranostic materials. However, to date, TP-FPSs with long tF and high κt have been rarely reported. Toward achieving this goal, we report in this study a systematic investigation of excitation dynamics in a heteroatom-containing organic molecule (3-aminophthalic acid, abbreviated as 3-APA). Our study demonstrates that 3-APA has an n-π∗ absorption band and two-photon absorption. Derived from n-π∗ transition feature, 3-APA exhibits not only a considerably long tF (11.5 ns) but also an efficient singlet-to-triplet intersystem crossing (19.2%), which leads to a high δ (18.4%). With these properties, we successfully used 3-APA as a novel TP-FPS for the proof-of-concept application in two-photon fluorescence lifetime imaging and two-photon photodynamic therapy. Notably, this work gives a better understanding of the excitation process and mechanism involved in TP-FPSs, which should be a valuable guide for constructing novel high-performing TP-FPSs.
| Original language | English |
|---|---|
| Pages (from-to) | 20945-20951 |
| Number of pages | 7 |
| Journal | Journal of Physical Chemistry C |
| Volume | 122 |
| Issue number | 36 |
| DOIs | |
| State | Published - 13 Sep 2018 |
| Externally published | Yes |
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