Litcius/Paper detail

Two‐Photon Excited Near‐Infrared Phosphorescence Based on Secondary Supramolecular Confinement

Xin‐Kun Ma, Xiaolu Zhou, Jing Wu, Fang‐Fang Shen, Yu Liu

2022Advanced Science63 citationsDOIOpen Access PDF

Abstract

Organic phosphorescence materials have received wide attention in bioimaging for bio-low toxicity and large Stokes. Herein, a design strategy to achieve near-infrared (NIR) excitation and emission of organic room-temperature phosphorescence through two-stage confinement supramolecular assembly is presented. Via supramolecular macrocyclic confinement, the host-guest complexes exhibit phosphorescence with two-photon absorption (excitation wavelength up to 890 nm) and NIR emission (emission wavelength up to 800 nm) in aqueous solution, and further nano-confinement assembly significantly strengthens phosphorescence. Moreover, the nano-assemblies possess color-tunable luminescence spanning from the visible to NIR regions under different excitation wavelengths. Intriguingly, the prepared water-soluble assemblies maintain two-photon absorption and multicolor luminescence in cells or vivo.

Topics & Concepts

PhosphorescenceLuminescenceAbsorption (acoustics)PhotochemistryMaterials scienceExcited stateSupramolecular chemistryAqueous solutionPersistent luminescenceOptoelectronicsExcitationChemistryFluorescenceOpticsMoleculePhysical chemistryAtomic physicsOrganic chemistryPhysicsComposite materialThermoluminescenceQuantum mechanicsLuminescence and Fluorescent MaterialsMolecular Sensors and Ion DetectionNanoplatforms for cancer theranostics