We introduce a methodology to reversibly pattern planar surfaces via the light-induced dimerization of anthracenes, particularly involving a 9-triazolylanthracene motif. Specifically, we demonstrate that the visible light-induced forward reaction can be employed to pattern small molecule species as well as polymers in a spatially resolved fashion. Under UV irradiation, the generated patterns can be erased to regenerate reactive areas, which are then available for a new functionalization step. The dynamic change in surface chemistry is evidenced by ToF-SIMS
Coumarin-functionalized cellulose sheets were chemically modified using a visible light catalyzed “P...
We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions....
We introduce visible light induced dynamic covalent chemistry as a powerful reversible ligation tool...
We introduce a methodology to reversibly pattern planar surfaces via the light-induced dimerization ...
Catalyst-free and bond-forming light-induced reactions have seen an unprecedented renaissance in the...
The ability to switch between thermally and photochemically activated reaction channels with an exte...
Laser-induced reversible photocycloadditions with anthracene monomer (A) are of key interest in gene...
The photodimerisation of anthracene is a reversible bimolecular process. Once dimerised, the monomer...
Summary Encoding chemical information onto surfaces in defined positions is of key importance for a ...
\u3cp\u3eLight responsive materials that are able to change their shape are becoming increasingly im...
The reversible surface patterns with fluorescence and topography can possibly enable information rec...
Light responsive materials that are able to change their shape are becoming increasingly important. ...
Establishing control over chemical reactions on interfaces is a key challenge in contemporary surfac...
A novel and very simple photochemical strategy that utilizes light as a facile means to provide spat...
An efficient method for polymer surface patterning via Diels-Alder trapping of photo-generated thioa...
Coumarin-functionalized cellulose sheets were chemically modified using a visible light catalyzed “P...
We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions....
We introduce visible light induced dynamic covalent chemistry as a powerful reversible ligation tool...
We introduce a methodology to reversibly pattern planar surfaces via the light-induced dimerization ...
Catalyst-free and bond-forming light-induced reactions have seen an unprecedented renaissance in the...
The ability to switch between thermally and photochemically activated reaction channels with an exte...
Laser-induced reversible photocycloadditions with anthracene monomer (A) are of key interest in gene...
The photodimerisation of anthracene is a reversible bimolecular process. Once dimerised, the monomer...
Summary Encoding chemical information onto surfaces in defined positions is of key importance for a ...
\u3cp\u3eLight responsive materials that are able to change their shape are becoming increasingly im...
The reversible surface patterns with fluorescence and topography can possibly enable information rec...
Light responsive materials that are able to change their shape are becoming increasingly important. ...
Establishing control over chemical reactions on interfaces is a key challenge in contemporary surfac...
A novel and very simple photochemical strategy that utilizes light as a facile means to provide spat...
An efficient method for polymer surface patterning via Diels-Alder trapping of photo-generated thioa...
Coumarin-functionalized cellulose sheets were chemically modified using a visible light catalyzed “P...
We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions....
We introduce visible light induced dynamic covalent chemistry as a powerful reversible ligation tool...