4.8 Article

Confined-domain crosslink-enhanced emission effect in carbonized polymer dots

Journal

LIGHT-SCIENCE & APPLICATIONS
Volume 11, Issue 1, Pages -

Publisher

SPRINGERNATURE
DOI: 10.1038/s41377-022-00745-4

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Funding

  1. National Science Foundation of China (NSFC) [22035001, 21774041, 2017TD-06]

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In this study, the confined-domain crosslink-enhanced emission (CEE) effect in carbonized polymer dots (CPDs) was investigated, providing insights into the structure and luminescence properties of CPDs. The findings are of general significance for the further development of CPDs with tailored properties.
Revealing the photoluminescence (PL) origin and mechanism is a most vital but challenging topic of carbon dots. Herein, confined-domain crosslink-enhanced emission (CEE) effect was first studied by a well-designed model system of carbonized polymer dots (CPDs), serving as an important supplement to CEE in the aspect of spatial interactions. The addition-condensation polymerization strategy was adopted to construct CPDs with substituents exerting different degrees of steric hindrance. The effect of confined-domain CEE on the structure and luminescence properties of CPDs have been systematically investigated by combining characterizations and theoretical calculations. Such tunable spatial interactions dominated the coupling strength of the luminophores in one particle, and eventually resulted in the modulated PL properties of CPDs. These findings provide insights into the structural advantages and the PL mechanism of CPDs, which are of general significance to the further development of CPDs with tailored properties.

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