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KOCHERGIN, Y.; VILLA, K.; NOVOTNÝ, F.; PLUTNAR, J.; BOJDYS, M.; PUMERA, M.
Originální název
Multifunctional Visible-Light Powered Micromotors Based on Semiconducting Sulfur- and Nitrogen-Containing Donor-Acceptor Polymer
Anglický název
Druh
Článek WoS
Originální abstrakt
Photosensitive micromotors that can be remotely controlled by visible light irradiation demonstrate great potential in biomedical and environmental applications. To date, a vast number of light-driven micromotors are mainly composed from costly heavy and precious metal-containing multicomponent systems, that limit the modularity of chemical and physical properties of these materials. Herein, a highly efficient photocatalytic micromotors based exclusively on a purely organic polymer framework-semiconducting sulfur- and nitrogen-containing donor-acceptor polymer, is presented. Thanks to precisely tuned molecular architecture, this material has the ability to absorb visible light due to a conveniently situated energy gap. In addition, the donor-acceptor dyads within the polymer backbone ensure efficient photoexcited charge separation. Hence, these polymer-based micromotors can move in aqueous solutions under visible light illumination via a self-diffusiophoresis mechanism. Moreover, these micromachines can degrade toxic organic pollutants and respond to an increase in acidity of aqueous environments by instantaneous colour change. The combination of autonomous motility and intrinsic fluorescence enables these organic micromotors to be used as colorimetric and optical sensors for monitoring of the environmental aqueous acidity. The current findings open new pathways toward the design of organic polymer-based micromotors with tuneable band gap architecture for fabrication of self-propelled microsensors for environmental control and remediation applications.
Anglický abstrakt
Klíčová slova
micromotors; organic sensors; photocatalysis; semiconducting polymers; visible light
Klíčová slova v angličtině
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Rok RIV
2021
Vydáno
01.09.2020
Nakladatel
WILEY-V C H VERLAG GMBH
Místo
WEINHEIM
ISSN
1616-301X
Periodikum
ADVANCED FUNCTIONAL MATERIALS
Svazek
30
Číslo
38
Stát
Spolková republika Německo
Strany od
2002701-1
Strany do
2002701-9
Strany počet
9
URL
https://onlinelibrary.wiley.com/doi/full/10.1002/adfm.202002701