The Experts below are selected from a list of 285 Experts worldwide ranked by ideXlab platform
Josef Havel - One of the best experts on this subject based on the ideXlab platform.
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Comparison of Clusters Produced from Sb_2Se_3 Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Petr Němec, Virginie Nazabal, Lubomír Prokeš, Josef HavelAbstract:This study compared Sb_2Se_3 Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the Sb_ m Se_ n clusters formed. The results showed that homemade Sb_2Se_3 bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C_60, significantly increased the mass spectra intensity. In total, 19 Sb_ m Se_ n clusters were observed. Six novel, high-mass clusters—Sb_4Se_4^+, Sb_5Se_3-6^+, and Sb_7Se_4^+—were observed for the first time when using paraffin as a protective agent.
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Comparison of Clusters Produced from SbSe Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Virginie Nazabal, Lubomír Prokeš, Petr Němec, Josef HavelAbstract:This study compared SbSe Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the SbSe clusters formed. The results showed that homemade SbSe bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C, significantly increased the mass spectra intensity. In total, 19 SbSe clusters were observed. Six novel, high-mass clusters-SbSe, SbSe, and SbSe-were observed for the first time when using paraffin as a protective agent.
Fei Huang - One of the best experts on this subject based on the ideXlab platform.
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Comparison of Clusters Produced from Sb_2Se_3 Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Petr Němec, Virginie Nazabal, Lubomír Prokeš, Josef HavelAbstract:This study compared Sb_2Se_3 Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the Sb_ m Se_ n clusters formed. The results showed that homemade Sb_2Se_3 bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C_60, significantly increased the mass spectra intensity. In total, 19 Sb_ m Se_ n clusters were observed. Six novel, high-mass clusters—Sb_4Se_4^+, Sb_5Se_3-6^+, and Sb_7Se_4^+—were observed for the first time when using paraffin as a protective agent.
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Comparison of Clusters Produced from SbSe Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Virginie Nazabal, Lubomír Prokeš, Petr Němec, Josef HavelAbstract:This study compared SbSe Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the SbSe clusters formed. The results showed that homemade SbSe bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C, significantly increased the mass spectra intensity. In total, 19 SbSe clusters were observed. Six novel, high-mass clusters-SbSe, SbSe, and SbSe-were observed for the first time when using paraffin as a protective agent.
Lubomír Prokeš - One of the best experts on this subject based on the ideXlab platform.
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Comparison of Clusters Produced from Sb_2Se_3 Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Petr Němec, Virginie Nazabal, Lubomír Prokeš, Josef HavelAbstract:This study compared Sb_2Se_3 Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the Sb_ m Se_ n clusters formed. The results showed that homemade Sb_2Se_3 bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C_60, significantly increased the mass spectra intensity. In total, 19 Sb_ m Se_ n clusters were observed. Six novel, high-mass clusters—Sb_4Se_4^+, Sb_5Se_3-6^+, and Sb_7Se_4^+—were observed for the first time when using paraffin as a protective agent.
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Comparison of Clusters Produced from SbSe Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Virginie Nazabal, Lubomír Prokeš, Petr Němec, Josef HavelAbstract:This study compared SbSe Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the SbSe clusters formed. The results showed that homemade SbSe bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C, significantly increased the mass spectra intensity. In total, 19 SbSe clusters were observed. Six novel, high-mass clusters-SbSe, SbSe, and SbSe-were observed for the first time when using paraffin as a protective agent.
Virginie Nazabal - One of the best experts on this subject based on the ideXlab platform.
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Comparison of Clusters Produced from Sb_2Se_3 Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Petr Němec, Virginie Nazabal, Lubomír Prokeš, Josef HavelAbstract:This study compared Sb_2Se_3 Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the Sb_ m Se_ n clusters formed. The results showed that homemade Sb_2Se_3 bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C_60, significantly increased the mass spectra intensity. In total, 19 Sb_ m Se_ n clusters were observed. Six novel, high-mass clusters—Sb_4Se_4^+, Sb_5Se_3-6^+, and Sb_7Se_4^+—were observed for the first time when using paraffin as a protective agent.
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Comparison of Clusters Produced from SbSe Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Virginie Nazabal, Lubomír Prokeš, Petr Němec, Josef HavelAbstract:This study compared SbSe Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the SbSe clusters formed. The results showed that homemade SbSe bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C, significantly increased the mass spectra intensity. In total, 19 SbSe clusters were observed. Six novel, high-mass clusters-SbSe, SbSe, and SbSe-were observed for the first time when using paraffin as a protective agent.
Petr Němec - One of the best experts on this subject based on the ideXlab platform.
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Comparison of Clusters Produced from SbSe Homemade Polycrystalline Material, Thin Films, and Commercial Polycrystalline Bulk Using Laser Desorption Ionization with Time of Flight Quadrupole Ion Trap Mass Spectrometry
Journal of The American Society for Mass Spectrometry, 2019Co-Authors: Fei Huang, Virginie Nazabal, Lubomír Prokeš, Petr Němec, Josef HavelAbstract:This study compared SbSe Material in the form of commercial Polycrystalline bulk, sputtered thin film, and homemade Polycrystalline Material using laser desorption ionization (LDI) time of flight mass spectrometry with quadrupole ion trap mass spectrometry. It also analyzed the stoichiometry of the SbSe clusters formed. The results showed that homemade SbSe bulk was more stable compared to thin film; its mass spectra showed the expected cluster formation. The use of Materials for surface-assisted LDI (SALDI), i.e., graphene, graphene oxide, and C, significantly increased the mass spectra intensity. In total, 19 SbSe clusters were observed. Six novel, high-mass clusters-SbSe, SbSe, and SbSe-were observed for the first time when using paraffin as a protective agent.