We report on a recently developed highly sensitive instrument for label-free detection of biomolecules based on the principle of a Young interferometer. With this technology, biomolecular interactions can be detected in real-time without elaborate sample preparation using a planar waveguide as sensing element. The binding reaction of the antibody-antigen pair immunoglobulin G and protein G has been studied and an affinity constant of K=2.6*107 M-1 has been determined
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
This paper presents a label-free optical biosensor based on a Young's interferometer configuration t...
The work presented in this thesis describes the development of a new waveguide interferometer for th...
A label free optical biosensor based on a free-space Young interferometer configuration is presented...
Ageing population in Europe will increasingly burden the health care system, e.g. chronic diseases a...
Le travail présenté dans cette thèse décrit le développement d’un nouveau dispositif interférométriq...
A phase shifting optical waveguide interferometer is demonstrated for label-free evanescent wave bio...
The rapid development in life science research requires continually new methods for the analysis of ...
The rapid development in life science research requires continually new methods for the analysis of ...
Pas de résuméThe rapid development in life science research requires continually new methods for the...
We report multiplexed label-free measurements of biomolecular interactions using silicon wire wavegu...
A Mach-Zehnder interferometer is presented, which uses the evanescent field of a planar optical wave...
A new method for producing label-free high-resolution images of biomolecular binding to the surface ...
We demonstrate a polymer rib waveguide Young interferometer sensor fabricated by UV-imprinting. An i...
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
This paper presents a label-free optical biosensor based on a Young's interferometer configuration t...
The work presented in this thesis describes the development of a new waveguide interferometer for th...
A label free optical biosensor based on a free-space Young interferometer configuration is presented...
Ageing population in Europe will increasingly burden the health care system, e.g. chronic diseases a...
Le travail présenté dans cette thèse décrit le développement d’un nouveau dispositif interférométriq...
A phase shifting optical waveguide interferometer is demonstrated for label-free evanescent wave bio...
The rapid development in life science research requires continually new methods for the analysis of ...
The rapid development in life science research requires continually new methods for the analysis of ...
Pas de résuméThe rapid development in life science research requires continually new methods for the...
We report multiplexed label-free measurements of biomolecular interactions using silicon wire wavegu...
A Mach-Zehnder interferometer is presented, which uses the evanescent field of a planar optical wave...
A new method for producing label-free high-resolution images of biomolecular binding to the surface ...
We demonstrate a polymer rib waveguide Young interferometer sensor fabricated by UV-imprinting. An i...
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
Optical biosensors based on one-dimensional photonic crystals sustaining Bloch surface waves are pro...
This paper presents a label-free optical biosensor based on a Young's interferometer configuration t...