Switches that can be actively steered by external stimuli along multiple pathways at the molecular level are the basis for next-generation responsive material systems. The operation of commonly employed molecular photoswitches revolves around one key structural coordinate. Photoswitches with functionalities that depend on and can be addressed along multiple coordinates would offer novel means to tailor and control their behavior and performance. The recently developed donor-acceptor Stenhouse adducts (DASAs) are versatile switches suitable for such applications Their photochemistry is well understood, but is only responsible for part of their overall photoswitching mechanism. The remaining thermal switching pathways are to date unknown. Her...
The first in-depth, systematic study of the photoswitching properties of Donor-Acceptor Stenhouse Ad...
Donor-Acceptor Stenhouse Adducts (DASAs) are molecular photoswitches that reversibly isomerize from ...
Stimuli‐responsive materials are attracting extensive interest as they offer the opportunity to tran...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Molecular photoswitches have opened up a myriad of opportunities in applications ranging from respon...
Our ability to visually perceive our environment is driven by small molecules – retinal – in our eye...
Molecular photoswitches have opened up a myriad of opportunities in applications ranging from respon...
Molecular photoswitches comprise chromophores that can be interconverted reversibly with light betwe...
Donor-acceptor Stenhouse adducts (DASAs) are negative photochromes that hold great promise for a var...
Donor-acceptor Stenhouse adducts (DASAs) are negative photochromes that switch with visible light an...
Molecular photoswitches comprise chromophores that can be interconverted reversibly with light betwe...
The binding of donor-acceptor Stenhouse adducts (DASAs) bearing hydrogen-bond recognition groups by ...
The first in-depth, systematic study of the photoswitching properties of Donor-Acceptor Stenhouse Ad...
Donor-Acceptor Stenhouse Adducts (DASAs) are molecular photoswitches that reversibly isomerize from ...
Stimuli‐responsive materials are attracting extensive interest as they offer the opportunity to tran...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Switches that can be actively steered by external stimuli along multiple pathways at the molecular l...
Molecular photoswitches have opened up a myriad of opportunities in applications ranging from respon...
Our ability to visually perceive our environment is driven by small molecules – retinal – in our eye...
Molecular photoswitches have opened up a myriad of opportunities in applications ranging from respon...
Molecular photoswitches comprise chromophores that can be interconverted reversibly with light betwe...
Donor-acceptor Stenhouse adducts (DASAs) are negative photochromes that hold great promise for a var...
Donor-acceptor Stenhouse adducts (DASAs) are negative photochromes that switch with visible light an...
Molecular photoswitches comprise chromophores that can be interconverted reversibly with light betwe...
The binding of donor-acceptor Stenhouse adducts (DASAs) bearing hydrogen-bond recognition groups by ...
The first in-depth, systematic study of the photoswitching properties of Donor-Acceptor Stenhouse Ad...
Donor-Acceptor Stenhouse Adducts (DASAs) are molecular photoswitches that reversibly isomerize from ...
Stimuli‐responsive materials are attracting extensive interest as they offer the opportunity to tran...