International audienceTelluride glasses possess the widest infrared window of all amorphous materials and are key to a number of long-wavelength applications such as bio-sensing. However they are not intrinsically good glass formers and require significant materials engineering for device fabrication. Strategies for stable glass engineering are presented and the fabrication of far infrared optical fibers is described. A new type of optical sensor based on electrophoretic capture of protein is also presented. This sensor is based on a conducting telluride glass which can act as both a capture electrode and an infrared optical element for collecting vibrational signatures of target molecules such as proteins
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
Fiber Evanescent Wave Spectroscopy (FEWS) is an efficient way to collect optical spectra in situ, in...
Long-wave infrared fibers are used in an increasing number of applications ranging from thermal imag...
International audienceFar-infrared transmitting telluride glasses are synthesized by stabilizing the...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceChalcogenide glass fibers are very suitable to carry out mid-infrared spectro...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceFor the detection of an exo-planet on which signs of life are possible, one ne...
International audienceChalcogenide glasses constitute the only class of materials that remain fully ...
International audienceChalcogenide glasses constitute the only class of materials that remain fully ...
International audienceThis study reports on the synthesis of telluride glasses that have transmissio...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
Fiber Evanescent Wave Spectroscopy (FEWS) is an efficient way to collect optical spectra in situ, in...
Long-wave infrared fibers are used in an increasing number of applications ranging from thermal imag...
International audienceFar-infrared transmitting telluride glasses are synthesized by stabilizing the...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceChalcogenide glass fibers are very suitable to carry out mid-infrared spectro...
International audienceChalcogenide glasses are based on sulfur, selenium and tellurium elements, and...
International audienceFor the detection of an exo-planet on which signs of life are possible, one ne...
International audienceChalcogenide glasses constitute the only class of materials that remain fully ...
International audienceChalcogenide glasses constitute the only class of materials that remain fully ...
International audienceThis study reports on the synthesis of telluride glasses that have transmissio...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
International audienceChalcogenide glasses are a matchless material as far as mid-infrared (IR) appl...