Issue 30, 2019

On–Off switching of the phosphorescence signal in a carbon dot/polyvinyl alcohol composite for multiple data encryption

Abstract

Phosphorescence processes in composite systems based on luminescent carbon dots (CDs) are of great fundamental and practical interest. Herein, the control of the phosphorescent signal in a CD/polyvinyl alcohol (PVA) composite is realized. Enhanced green phosphorescence is obtained via thermal annealing of the composite under 200 °C, which can be quenched via water treatment, and then recovered again, via either repeated annealing or near-infrared laser irradiation. Water molecules infiltrating the CD/PVA composite lead to considerable vibrational motions of the CD surface groups through destruction of the rigid composite structure together with an increase in the possibility of the penetration of the phosphorescence quenchers, and thus a decrease in the phosphorescence intensity. After repeated annealing, the nonradiative transitions are restricted, and the phosphorescence signal is recovered again. Based on such on–off switching of the phosphorescence signal, a concept of multiple data encryption is realized by using the CD@PVA composite.

Graphical abstract: On–Off switching of the phosphorescence signal in a carbon dot/polyvinyl alcohol composite for multiple data encryption

Supplementary files

Article information

Article type
Paper
Submitted
17 Jun 2019
Accepted
08 Jul 2019
First published
08 Jul 2019

Nanoscale, 2019,11, 14250-14255

On–Off switching of the phosphorescence signal in a carbon dot/polyvinyl alcohol composite for multiple data encryption

X. Bao, E. V. Ushakova, E. Liu, Z. Zhou, D. Li, D. Zhou, S. Qu and A. L. Rogach, Nanoscale, 2019, 11, 14250 DOI: 10.1039/C9NR05123F

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