研究目的
Investigating the synthesis, structure, and optical properties of AgGaGenS2(n+1) single crystals for mid-IR laser applications.
研究成果
AgGaGenS2(n+1) crystals exhibit excellent nonlinear and linear optical properties suitable for mid-IR laser applications. Thermal annealing improves optical quality by eliminating absorptions and widening the band gap.
研究不足
The synthesis process is plagued by high vapor pressure of S and GeS2, leading to violent explosions. Large degree of supercooling, stoichiometric variation, second-phase precipitates, and twin crystals are difficult to avoid.
1:Experimental Design and Method Selection
AgGaGenS2(n+1) polycrystals were synthesized by vapor transport and mechanical oscillation method with different cooling processes. Single crystals were grown using the modified Bridgman method.
2:Sample Selection and Data Sources
High-purity (6 N) gallium, silver, germanium, and sulfur were used according to the stoichiometry of AgGaGenS2(n+1).
3:List of Experimental Equipment and Materials
Double-walled quartz ampule, two-zone furnace, four-zone furnace, high-resolution X-ray diffractometer, XPS spectrometer, Raman spectrometer, Hall effect measurement system, FTIR spectrometer, UV-visible-NIR spectrometer.
4:Experimental Procedures and Operational Workflow
Polycrystal synthesis was carried out in a two-zone furnace. Single crystals were grown in a four-zone furnace with optimized growth conditions. Thermal annealing was performed at 500 °C for 250 h.
5:Data Analysis Methods
X-ray diffraction analysis and refinement, XPS and Raman spectra analysis, Hall measurement data analysis, optical properties analysis.
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EMPYREAN
PANalytical B.V.
X-ray diffraction analysis
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JSM-7500F
JEOL
Scanning electron microscopy and energy-dispersive X-ray spectroscopy
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AXIS Ultra DLD
Kratos
X-ray photoelectron spectroscopy
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LabRAM HR
HORIBA
Raman scattering measurements
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HMS-300
Ecopia
Hall effect measurement
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