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MRS Bulletin, ISSN 0883-7694, 01/2013, Volume 38, Issue 1, pp. 28 - 33
Organic single crystals are an established part of the emerging field of organic optoelectronics, because they provide an ideal platform for the studies of the... 
crystal growth | semiconducting | electrical properties | crystal | Organic | VERTICAL BRIDGMAN TECHNIQUE | HOLE MOBILITY | PHYSICS, APPLIED | PERFECTION | PHYSICAL VAPOR GROWTH | MATERIALS SCIENCE, MULTIDISCIPLINARY | PURIFICATION | MICROWIRES | ANTHRACENE | ELECTRONIC TRANSPORT | NANOWIRES | FIELD-EFFECT TRANSISTORS
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 06/2017, Volume 468, Issue C, pp. 326 - 330
Lithium containing chalcogenide single crystals have become very promising materials for photonics and radiation detection. Detection applications include... 
Crystal growth | Chalcogenide | Lithium | Bridgman | Neutron | Solid-solution | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | MID-IR | CRYSTALLOGRAPHY | OPTICS | neutron | chalcogenide | MATERIALS SCIENCE | crystal growth | solid-solution
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 06/2017, Volume 468, pp. 761 - 765
Semiconducting Mg Si is known as a thermoelectric material and recently attracts increasing attention as a Si-based, low-cost and environmental friendly... 
B1. Mg2Si | A2. Bridgman methods | B3. Infrared sensors | A2. Single crystal growth | A2. micro-pulling-down methods | B1. Mg | micro-pulling-down methods | Mg2Si | SINGLE-CRYSTALS | PHYSICS, APPLIED | Bridgman methods | MATERIALS SCIENCE, MULTIDISCIPLINARY | Single crystal growth | Infrared sensors | CRYSTALLOGRAPHY
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 02/2020, Volume 532, p. 125438
In this paper we report on the crystal growth and characterization of thallium-based halide scintillators of composition Tl MX (M = La, Hf; X  = Cl, Br; n = 5,... 
B1. Halides | A1. Characterization | B2. Scintillator materials | A2. Bridgman crystal growth | A2. Flux growth
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 06/2015, Volume 419, pp. 37 - 41
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 02/2018, Volume 483, Issue C, pp. 121 - 124
The crystal growth and behavior of a high-performance, non-hygroscopic scintillator, Cs HfCl (CHC) and its variant, Cs HfCl Br (CHCB) are presented in this... 
A2. Bridgman technique | B1. Halides | A1. Characterization | A2. Single crystal growth | B2. Scintillator materials | Characterization | Bridgman technique | PHYSICS, APPLIED | Scintillator materials | LUMINESCENCE | Halides | MATERIALS SCIENCE, MULTIDISCIPLINARY | Single crystal growth | CRYSTALLOGRAPHY | Crystallography | Materials Science | Physics
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 01/2018, Volume 481, pp. 29 - 34
CdSiP is the only crystal that can offer Non-critical Phase Matching (NCPM) for a 1064 nm pumped optical parametric oscillation (OPO) with idler output in the... 
A2 Single crystal growth | B3 Nonlinear optical | A1 Etching | A2 Bridgman technique | Bridgman technique | SINGLE-CRYSTALS | PHASE | PHYSICS, APPLIED | ZNGEP2 | MATERIALS SCIENCE, MULTIDISCIPLINARY | Single crystal growth | Etching | Nonlinear optical | CRYSTALLOGRAPHY
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 08/2019, Volume 796, pp. 138 - 145
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 04/2018, Volume 487, pp. 8 - 11
Thallium bromide (TlBr) is an attractive semiconductor material for fabrication of radiation detectors due to its high photon stopping power originating from... 
Thallium bromide | Large size | Bridgman crystal growth | Defects | PHYSICS, APPLIED | INTERFACE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CRYSTALLOGRAPHY | WATER
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 04/2018, Volume 487, p. 8
Journal Article
Reports on Progress in Physics, ISSN 0034-4885, 12/2011, Volume 74, Issue 12, pp. 124503 - 22
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 02/2018, Volume 483, p. 211
Thallium Bromide (TlBr) is a promising room-temperature radiation detector candidate with excellent charge transport properties. Currently, Travelling Molten... 
Crystal growth | Thermal stress | Thallium | Semiconductors | Radiation detectors | Crystals | Radiation | EFG (crystal growth) | Czochralski method | Charge transport | Correlation analysis | Crystal pulling | Viability | Bridgman method
Journal Article
Crystal Growth & Design, ISSN 1528-7483, 04/2018, Volume 18, Issue 4, pp. 2046 - 2054
In the current work, successful growth of an In-doped CdZnTe (InCZT) ingot with a bulk size of ∼8 cm long and 2.5 cm diameter was achieved through gradient... 
VERTICAL BRIDGMAN GROWTH | FRACTURE-TOUGHNESS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CRYSTALLOGRAPHY | CDZNTE SINGLE-CRYSTALS | MECHANICAL-PROPERTIES | CHEMISTRY, MULTIDISCIPLINARY | TE INCLUSIONS | RADIATION DETECTORS | MICROHARDNESS MEASUREMENT | TRAVELING HEATER METHOD | ACCELERATED CRUCIBLE ROTATION | 50 MM CZT
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 02/2018, Volume 483, pp. 211 - 215
Journal Article
Optical Materials, ISSN 0925-3467, 10/2015, Volume 48, pp. 1 - 6
The presented study reports on the spectroscopic characteristics of a new high performance scintillation material KCaI 3 :Eu. The growth of Ø 17 mm boules... 
Bridgman technique | Scintillator | Gamma-ray detection | Metal halide | Single crystal growth
Journal Article
Journal of Crystal Growth, ISSN 0022-0248, 06/2017, Volume 468, p. 761
Semiconducting Mg2Si is known as a thermoelectric material and recently attracts increasing attention as a Si-based, low-cost and environmental friendly... 
Infrared detectors | Crystal growth | Growth rate | Semiconductors | Silicides | Intermetallic compounds | Temperature gradients | Crystals | Crucibles | Evaporation | Magnesium compounds | Substrates | Studies | Thermoelectric materials | Crystal pulling | Sensors | Electron density | Bridgman method
Journal Article
Radiation Measurements, ISSN 1350-4487, 05/2016, Volume 88, pp. 7 - 13
Eu :CeBr crystals were grown by vertical Bridgman growth method and slight aliovalent doping of Eu in the CeBr crystal did not change the crystal structure.... 
Crystal growth | Vertical Bridgman method | Scintillation crystal | Energy transfer | CeBr3 | CeBr | CE3 | PHOSPHOR | NUCLEAR SCIENCE & TECHNOLOGY | EU2+ ENERGY-TRANSFER
Journal Article
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