Multi‐Step and Switchable Energy Transfer in Photoluminescent Organosilicone Capsules

Author:

Yu Longyue1,Liu Hailong2,Feng Ning1,Yi Gang2,Xin Xia3,Hao Jingcheng1,Li Hongguang1ORCID

Affiliation:

1. Key Laboratory of Colloid and Interface Chemistry Ministry of Education School of Chemistry and Chemical Engineering Shandong University Jinan Shandong 250100 China

2. Shandong Key Laboratory of Advanced Organosilicon Materials and Technologies Zibo 256401 China

3. National Engineering Research Center for Colloidal Materials Shandong University Jinan 250100 China

Abstract

AbstractLight‐harvesting is of vital importance for many events, such as photosynthesis. To efficiently gather and transfer solar energy, delicate antenna is needed, which has been achieved by algae and plants. However, construction of efficient light‐harvesting systems using multiple, artificial building blocks is still challenging. Here, blue‐emitting organosilicone capsules containing carbon dots (denoted as CDs‐Si) in ethanol are prepared, which can effectively transfer energy to green‐emitting (silicone‐functionalized bodipy, Si‐BODIPY) or red‐emitting (rhodamine b, RhB) dyes. In ternary system, sequential Förster resonance energy transfer from CDs‐Si to Si‐BODIPY and further to RhB is realized, which is accompanied with a less pronounced, parallel FRET directly from CDs‐Si to RhB. The overall efficiency of energy transfer reaches ≈86%. By introducing a photoswitch (1,2‐bis(2,4‐dimethyl‐5‐phenyl‐3‐thienyl)‐3,3,4,4,5,5‐hexafluoro‐1‐cyclopentene, DAE) to the system, the emission becomes switchable under alternative illumination with UV and visible light, leading to the formation of smart artificial light‐harvesting systems.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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