Development of porous membranes capable of controlling flow or changing their permeability to specific chemical entities, in response to small changes in environmental stimuli, is an area of appealing research, since these membranes present a wide variety of applications. The synthesis of these membranes has been mainly approached through grafting of environmentally responsive polymers to the surface walls of polymeric porous membranes. This synergizes the chemical stability and mechanical strength of the polymer membrane with the fast response times of the bonded polymer chains. Therefore, different composite membranes capable of changing their effective pore size with environmental triggers have been developed. A recent interest has been ...
Membrane research generally involves work at three different levels, including membrane development,...
Polymersomes are vesicles formed through self-assembly of diblock copolymers that display the lamell...
Metal nanoparticles (MNPs) have unique physico-chemical properties advantageous for catalytic applic...
Development of porous membranes capable of controlling flow or changing their permeability to specif...
The development of porous membranes that can rapidly change flow rates in response to external, noni...
textThis work describes the synthesis pathways to the development of optically and thermally respons...
Stimuli-responsive materials have exhibited a wide range of applications, because the necessity of d...
The utilization of light to produce useful responses holds much potential for changing the world thr...
Membrane research generally involves work at three different levels, including membrane development,...
The advent of nanotechnology has triggered novel developments and applications for polymer-based mem...
Abstract: Responsive polymers attached to the inside of nano/micro-pores have attracted great intere...
Smart membranes, which can selectively control the transfer of light, air, humidity and temperature,...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles inside a functionalized...
Membranes are finding wide applications in various fields spanning biological, water, and energy are...
International audienceThe aim of this work is the synthesis of polymer- tabilized Pd nanoparticles i...
Membrane research generally involves work at three different levels, including membrane development,...
Polymersomes are vesicles formed through self-assembly of diblock copolymers that display the lamell...
Metal nanoparticles (MNPs) have unique physico-chemical properties advantageous for catalytic applic...
Development of porous membranes capable of controlling flow or changing their permeability to specif...
The development of porous membranes that can rapidly change flow rates in response to external, noni...
textThis work describes the synthesis pathways to the development of optically and thermally respons...
Stimuli-responsive materials have exhibited a wide range of applications, because the necessity of d...
The utilization of light to produce useful responses holds much potential for changing the world thr...
Membrane research generally involves work at three different levels, including membrane development,...
The advent of nanotechnology has triggered novel developments and applications for polymer-based mem...
Abstract: Responsive polymers attached to the inside of nano/micro-pores have attracted great intere...
Smart membranes, which can selectively control the transfer of light, air, humidity and temperature,...
The aim of this work is the synthesis of polymer-stabilized Pd nanoparticles inside a functionalized...
Membranes are finding wide applications in various fields spanning biological, water, and energy are...
International audienceThe aim of this work is the synthesis of polymer- tabilized Pd nanoparticles i...
Membrane research generally involves work at three different levels, including membrane development,...
Polymersomes are vesicles formed through self-assembly of diblock copolymers that display the lamell...
Metal nanoparticles (MNPs) have unique physico-chemical properties advantageous for catalytic applic...