In recent decades, the design and construction of smart materials capable of switching into a polyzwitterionic state by an external trigger have been intensively pursued. Polyzwitterionic states have unique antifouling and surface properties and external triggers, such as pH, light, ions, electric field and CO2, cause significant changes in materials with regard to overall charge, ionic strength and wettability. This survey highlights current progress in the irreversible as well as the reversible switching process involving polyzwitterionic moieties, which can, in turn, be applied to studying the interaction of various interfaces with biological species as protein, DNA, bacteria or platelets and also for advanced use
The widespread occurrence of zwitterionic compounds in nature has incited their frequent use for des...
Stimuli-responsive surfaces have sparked considerable interest in recent years, especially in view o...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...
In recent decades, the design and construction of smart materials capable of switching into a polyzw...
Special Issue: Advanced Materials in Electroanalysis.Application of stimuli‐responsive materials, pa...
Surfaces coated with polyzwitterions are most well-known for their ability to resist protein adsorpt...
[[abstract]]Conducting polymers (CPs) have gained attention as electrode materials in bioengineering...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
A poly(oxanorbornene)-based polyzwitterion with primary ammonium and carboxylate groups (PZI) has be...
A poly(oxanorbornene)-based polyzwitterion with primary ammonium and carboxylate groups (PZI) has b...
Switchable surfaces are highly useful materials with surface properties that change in response to e...
Living organisms have evolved, over billions of years, to develop specialized biostructures with swi...
We demonstrate the possibilities for subtle control over redox-driven surface switching that could b...
Development of smart, multifunction materials is challenging but important for many fundamental and ...
A new class of functionalized poly-<i>p</i>-xylyene coating has been synthesized to provide switchab...
The widespread occurrence of zwitterionic compounds in nature has incited their frequent use for des...
Stimuli-responsive surfaces have sparked considerable interest in recent years, especially in view o...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...
In recent decades, the design and construction of smart materials capable of switching into a polyzw...
Special Issue: Advanced Materials in Electroanalysis.Application of stimuli‐responsive materials, pa...
Surfaces coated with polyzwitterions are most well-known for their ability to resist protein adsorpt...
[[abstract]]Conducting polymers (CPs) have gained attention as electrode materials in bioengineering...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
A poly(oxanorbornene)-based polyzwitterion with primary ammonium and carboxylate groups (PZI) has be...
A poly(oxanorbornene)-based polyzwitterion with primary ammonium and carboxylate groups (PZI) has b...
Switchable surfaces are highly useful materials with surface properties that change in response to e...
Living organisms have evolved, over billions of years, to develop specialized biostructures with swi...
We demonstrate the possibilities for subtle control over redox-driven surface switching that could b...
Development of smart, multifunction materials is challenging but important for many fundamental and ...
A new class of functionalized poly-<i>p</i>-xylyene coating has been synthesized to provide switchab...
The widespread occurrence of zwitterionic compounds in nature has incited their frequent use for des...
Stimuli-responsive surfaces have sparked considerable interest in recent years, especially in view o...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...