Near-infrared Aggregation-Induced Emission Characteristics of New o-Carborane Fluorophores with Large Stokes Shifts and Self-recovering Mechanochromic Luminescence

Solid-state near-infrared (NIR) luminescence fluorophores have attracted much attention due to their potential in bio applications and advanced optical devices. Therefore, it is essential to design and synthesize novel NIR AIE fluorophores and investigating the structure-activity relationships for the applications. Here, we synthesized two NIR AIE o-carborane fluorophores with donor-acceptor-donor (D-A-D) structures. These fluorophores have emissions extending into the NIR region and are named CPO and CPS with phenoxazine (PXZ) and phenothiazine (PTZ) derivatives as the electron donors, respectively. Despite the very similar chemical structures of PXZ and PTZ, CPO and CPS exhibited rather different photophysical properties. The o-carborane fluorophores CPO and CPS show large Stokes shifts (> 14000 cm-1), near-infrared AIE characteristics, and self-recovering mechanochromic luminescence. The reorganization of molecular structures in the excited states leads to the planarization of their conjugated backbones and enhances Stokes shifts. This work not only demonstrates an efficient strategy for constructing organic NIR AIE o-carborane-containing fluorophores but also indicates their promising potential as advanced optoelectronic materials.

You have access to this article

Please wait while we load your content... Something went wrong. Try again?

留言 (0)

沒有登入
gif