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Design of Multifunctional Materials: Chalcogenides and ChalcopyritesThere is a strong need for developing multifunctional materials to reduce the cost of applied material without compromising the performance of the detectors, devices and sensors. The materials design, processing, growth and fabrication of bulk and nanocrystals and fabrication into devices and sensors involve huge cost and resources including a multidisciplinary team of experts. Because of this reason, prediction of multifunctionality of materials before design and development should be evaluated. Chalcogenides and chalcopyrites are a very exciting class of materials for developing multifunctionality. Materials such as Gallium selenide GaSe and zinc selenide ZnSe have been proven to be excellent examples. GaSe is a layered material and very difficult to grow in large crystal. However, it's ternary and quaternary analogs such as thallium gallium selenide TlGaSe2, thallium gallium selenide sulfide TlGaSe2-xSs, thallium arsenic selenide Tl3AsSe3, silver gallium selenide AgGaGe3Se8, AgGaGe5Se12 and several others have shown great promise for multifunctionality. Several of these materials have shown good efficiency for frequency conversion (nonlinear optical NLO), electro-optic modulation, and acousto-optic tunable filters and imagers suitable for the visible, near-infrared wavelength, mid wave infrared (MWIR), long wave infrared (LWIR) and even up to Tera hertz wavelength (THW) regions. In addition, this class of materials have demonstrated low absorption coefficients and power handling capability in the systems. Also, these crystals do not require post growth annealing, show very large transparency range and fabricability.
Document ID
20170012431
Acquisition Source
Marshall Space Flight Center
Document Type
Abstract
Authors
Singh, N. B.
(Maryland Univ. Baltimore, MD, United States)
Su, Ching Hua
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Arnold, Brad
(Maryland Univ. Baltimore, MD, United States)
Choa, Fow-Sen
(Maryland Univ. Baltimore, MD, United States)
Date Acquired
December 19, 2017
Publication Date
October 8, 2017
Subject Category
Metals And Metallic Materials
Chemistry And Materials (General)
Report/Patent Number
M17-6098
Report Number: M17-6098
Meeting Information
Meeting: Annual Materials Science & Technology (MS&T) Conference 2017
Location: Pittsburg, PA
Country: United States
Start Date: October 8, 2017
End Date: October 12, 2017
Sponsors: American Ceramic Society, ASM International, Association for Iron and Steel Technology (AIST)
Distribution Limits
Public
Copyright
Public Use Permitted.
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