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Plasma modification of vanadium oxynitride surfaces: Characterization by in situ XPS experiments and DFT calculations (open access)

Plasma modification of vanadium oxynitride surfaces: Characterization by in situ XPS experiments and DFT calculations

Article reports XPS and DFT findings regarding the O₂ plasma, NH₃ plasma, and NH₃+O₂ plasma treatment of sputter deposited vanadium oxynitride films.
Date: October 13, 2020
Creator: Osonkie, A.; Lee, V.; Chukwunenye, P.; Cundari, Thomas R., 1964- & Kelber, Jeffry A.
Object Type: Article
System: The UNT Digital Library
Mechanism and modeling of the formation of gaseous alkali sulfates (open access)

Mechanism and modeling of the formation of gaseous alkali sulfates

Article on the mechanism and modeling of the formation of gaseous alkali sulfates.
Date: October 13, 2004
Creator: Glarborg, Peter & Marshall, Paul
Object Type: Article
System: The UNT Digital Library
Optical in-situ measurements and modeling of post-flame sulfation of NaOH(g) and NaCl(g) (open access)

Optical in-situ measurements and modeling of post-flame sulfation of NaOH(g) and NaCl(g)

Article describes post-flame sulfation of gaseous sodium hydroxide (NaOH) and sodium chloride (NaCl) was investigated with optical in situ measurements at 850 to 1475°C. The combined experimental data, chemical equilibrium calculations and kinetic modeling of the present study support that sulfation of alkali species can occur in the gas phase through homogeneous reactions.
Date: October 13, 2022
Creator: Schmid, Daniel; Weng, Wubin; Li, Shen; Karlström, Oskar; Hupa, Mikko; Li, Zhongshan et al.
Object Type: Article
System: The UNT Digital Library
Process for Synthesizing Oil and Surfactant-free Hyaluronic Acid Nanoparticles and Microparticles (open access)

Process for Synthesizing Oil and Surfactant-free Hyaluronic Acid Nanoparticles and Microparticles

Patent relating to a process for synthesizing oil and surfactant-free hyaluronic acid nanoparticles and microparticles.
Date: November 3, 2004
Creator: Hu, Zhibing; Xia, Xiaohu & Tang, Liping
Object Type: Patent
System: The UNT Digital Library