We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions. We show that a symmetrical oligoamide (SOA) attached to poly(methyl methacrylate) (PMMA) can be repeatedly immobilized and cleaved off spatially defined surface domains photochemically functionalized with asymmetric oligoamides (AOAs). The spatially resolved recodability is imaged and quantified via ToF-SIMS. © 2016 The Royal Society of Chemistry
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Photo-active shape memory polymers (SMPs) are considered as a promising candidate for converting lig...
The preparation of patterned photoswitchable surfaces by employing the nitrile imine-mediated tetraz...
We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions....
A novel and very simple photochemical strategy that utilizes light as a facile means to provide spat...
The use of a bottom-up approach to the fabrication of nanopatterned functional surfaces, which are c...
A convenient way for the achievement of polymer-based solid materials for specific biomedical applic...
We show that surfaces modified with asymmetric 2-ureido-4[1H]-pyrimidinone-hydroxyalkane disulfide a...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
We show that surfaces modified with asymmetric 2-ureido-4[1H]-pyrimidinone-hydroxyalkane disulfide a...
Materials interfaces—with a gas, a liquid, or another solid—are highly important for advanced applic...
We introduce a methodology to reversibly pattern planar surfaces via the light-induced dimerization ...
Establishing control over chemical reactions on interfaces is a key challenge in contemporary surfac...
An efficient phototriggered Diels-Alder conjugation is utilized to graft in an effective and straigh...
An efficient method for polymer surface patterning via Diels-Alder trapping of photo-generated thioa...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Photo-active shape memory polymers (SMPs) are considered as a promising candidate for converting lig...
The preparation of patterned photoswitchable surfaces by employing the nitrile imine-mediated tetraz...
We introduce recodable surfaces solely based on reversible artificial hydrogen bonding interactions....
A novel and very simple photochemical strategy that utilizes light as a facile means to provide spat...
The use of a bottom-up approach to the fabrication of nanopatterned functional surfaces, which are c...
A convenient way for the achievement of polymer-based solid materials for specific biomedical applic...
We show that surfaces modified with asymmetric 2-ureido-4[1H]-pyrimidinone-hydroxyalkane disulfide a...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
We show that surfaces modified with asymmetric 2-ureido-4[1H]-pyrimidinone-hydroxyalkane disulfide a...
Materials interfaces—with a gas, a liquid, or another solid—are highly important for advanced applic...
We introduce a methodology to reversibly pattern planar surfaces via the light-induced dimerization ...
Establishing control over chemical reactions on interfaces is a key challenge in contemporary surfac...
An efficient phototriggered Diels-Alder conjugation is utilized to graft in an effective and straigh...
An efficient method for polymer surface patterning via Diels-Alder trapping of photo-generated thioa...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Photo-active shape memory polymers (SMPs) are considered as a promising candidate for converting lig...
The preparation of patterned photoswitchable surfaces by employing the nitrile imine-mediated tetraz...