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Sb2se3 powder

Manufactured by Thermo Fisher Scientific

Sb2Se3 powder is a semiconductor material that is composed of antimony (Sb) and selenium (Se) in a 2:3 ratio. It has a layered crystal structure and displays unique electronic and optical properties. This powder form of Sb2Se3 can be used for various research and development applications within the scientific and engineering communities.

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2 protocols using sb2se3 powder

1

Synthesis of Sb2S3 and Sb2Se3

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Antimony powder (Sb, 99.999%), elemental sulfur (S, 99.999%), elemental selenium (Se, 99.999%), Sb2S3 powder (99.999%) and Sb2Se3 powder (99.999%) were all purchased from Alfa Aesar. Anhydrous hydrazine (N2H4, 98%) was purchased from Sinopharm Group Co. Ltd. All chemicals were used without any purification.
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2

Comprehensive Characterization of Sb2(S1-xSex)3 Thin Films

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Raman analysis was performed on the hydrazine precursor solutions including Sb-S, Sb-Se, Sb-S-Se and S-Se solutions in a backscattering confocal configuration at room temperature. A LabRAM in Via Raman system was applied for measurement, and the unpolarized light was generated through a 532 nm Ar laser with power adjusted to 50 mW. Prior to measurement, each solution was sealed in a glass vial by parafilm in order to minimize oxygen and moisture exposure. X-ray diffraction (XRD) characterization (Philips, X pert pro MRD, with Cu Kα radiation, λ = 1.54178 Å) was performed on the annealed Sb2(S1-xSex)3 thin films prepared on TiO2 substrates. The compositions of the thin films were obtained through energy dispersive spectroscopy (FEI Quanta 600 scanning electron microscope, 20 kV). Sb2S3 powder (99.999%, Alfa Aesar) and Sb2Se3 powder (99.999%, Alfa Aesar) were used as standards for the calibration of EDS measurements. Scanning electron microscopy (FEI Nova NanoSEM450, without Pt coating) and UV-vis-NIR transmission spectroscopy (Perkin Elmer Instruments, Lambda 950 using integrating sphere) was performed on the Sb2(S1-xSex)3 films to determine the surface morphology and band gap, respectively.
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