Several nanoporous platforms were functionalized with pH-responsive poly(methacrylic acid) (PMAA) brushes using surface-initiated atom transfer radical polymerization (SI-ATRP). The growth of the PMAA brush and its pH-responsive behavior from the nanoporous platforms were confirmed by scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy, and atomic force microscopy (AFM). The swelling behavior of the pH-responsive PMAA brushes grafted only from the nanopore walls was investigated by AFM in aqueous liquid environment with pH values of 4 and 8. AFM images displayed open nanopores at pH 4 and closed ones at pH 8, which rationalizes their use as gating platforms. Ion conductivity across the nanopores was investigat...
A dual-functional nanofluidic device is demonstrated that integrates the ionic gate and the ionic re...
Nanopores play a decisive role in different technologies from oil production, separation, and sensin...
Abstract: Responsive polymers attached to the inside of nano/micro-pores have attracted great intere...
Several nanoporous platforms were functionalized with pH-responsive poly(methacrylic acid) (PMAA) br...
The aim of this thesis was the development of stimulus responsive polymer brush structures as microp...
The development of a biosensor for high throughput screening of membrane proteins is a major challen...
There is a growing need for functionalization strategies aimed to improve performance of platforms f...
Macromolecular nanotechnology can be used to develop switchable surfaces, especially so called polym...
We report on the surface-initiated polymerization by aqueous free radical polymerization (FRP) and a...
Nanopores in arrays on silicon chips are functionalized with pH-responsive poly(methacrylic acid) (P...
We present temperature-dependent ionic transport through an array of nanopores (cylindrical and coni...
In this work we describe for the first time the integration of "smart" polymer brushes into single c...
Responsive polymeric brushes of poly(methacrylic acid) (PMAA) were grafted from silicon surfaces usi...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
We describe the use of polyprotic polymer brushes to construct robust signal-responsive chemical dev...
A dual-functional nanofluidic device is demonstrated that integrates the ionic gate and the ionic re...
Nanopores play a decisive role in different technologies from oil production, separation, and sensin...
Abstract: Responsive polymers attached to the inside of nano/micro-pores have attracted great intere...
Several nanoporous platforms were functionalized with pH-responsive poly(methacrylic acid) (PMAA) br...
The aim of this thesis was the development of stimulus responsive polymer brush structures as microp...
The development of a biosensor for high throughput screening of membrane proteins is a major challen...
There is a growing need for functionalization strategies aimed to improve performance of platforms f...
Macromolecular nanotechnology can be used to develop switchable surfaces, especially so called polym...
We report on the surface-initiated polymerization by aqueous free radical polymerization (FRP) and a...
Nanopores in arrays on silicon chips are functionalized with pH-responsive poly(methacrylic acid) (P...
We present temperature-dependent ionic transport through an array of nanopores (cylindrical and coni...
In this work we describe for the first time the integration of "smart" polymer brushes into single c...
Responsive polymeric brushes of poly(methacrylic acid) (PMAA) were grafted from silicon surfaces usi...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
We describe the use of polyprotic polymer brushes to construct robust signal-responsive chemical dev...
A dual-functional nanofluidic device is demonstrated that integrates the ionic gate and the ionic re...
Nanopores play a decisive role in different technologies from oil production, separation, and sensin...
Abstract: Responsive polymers attached to the inside of nano/micro-pores have attracted great intere...