The mid-infrared spectral band (2-20 μm) is of significant technological importance for thermal imaging, spectroscopic sensing, and free-space communications. Lack of optical materials compatible with common semiconductor substrates, however, presents a standing hurdle for integrated photonic device development in the mid-infrared domain. Tellurene, atomically thin crystals of elemental tellurium, is an emerging 2-D material amenable to scalable solution-based synthesis. It uniquely combines small and tunable bandgap energies, high carrier mobility, exceptionally large electro-optic activity, and superior chemical stability, making it a promising and versatile material platform for mid-infrared photonics. With these material properties in m...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
This book provides expert coverage of the physical properties of new non-crystalline solids—tellurit...
We describe an approach for producing robust multimaterial chalcogenide glass fibers for mid-wave an...
© 2020 SPIE. New narrow-gap two-dimensional (2-D) semiconductors exemplified by black phosphorus and...
Tellurite glasses are photonic materials of special interest to the branch of optoelectronic and com...
Part of the Springer Series in Materials Science book series (SSMATERIALS, volume 254)The market for...
Tellurite glasses are low phonon energy optical materials suitable for the development of optical de...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
International audienceTelluride glasses, i.e., nonoxide glasses based on the chalcogen element tellu...
This book is the first to provide a comprehensive introduction to the synthesis, optical properties,...
Tellurite glasses are low phonon energy optical materials suitable for the development of optical de...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
peer-reviewedThis chapter provides expert coverage of the physical properties of new noncrystalline ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Tellurite glasses have been studied since the 1990s, when researchers found that these materials cou...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
This book provides expert coverage of the physical properties of new non-crystalline solids—tellurit...
We describe an approach for producing robust multimaterial chalcogenide glass fibers for mid-wave an...
© 2020 SPIE. New narrow-gap two-dimensional (2-D) semiconductors exemplified by black phosphorus and...
Tellurite glasses are photonic materials of special interest to the branch of optoelectronic and com...
Part of the Springer Series in Materials Science book series (SSMATERIALS, volume 254)The market for...
Tellurite glasses are low phonon energy optical materials suitable for the development of optical de...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
International audienceTelluride glasses, i.e., nonoxide glasses based on the chalcogen element tellu...
This book is the first to provide a comprehensive introduction to the synthesis, optical properties,...
Tellurite glasses are low phonon energy optical materials suitable for the development of optical de...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
peer-reviewedThis chapter provides expert coverage of the physical properties of new noncrystalline ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Tellurite glasses have been studied since the 1990s, when researchers found that these materials cou...
We demonstrate the scalable production of the first robust tellurium-based chalcogenide glass fibers...
This book provides expert coverage of the physical properties of new non-crystalline solids—tellurit...
We describe an approach for producing robust multimaterial chalcogenide glass fibers for mid-wave an...