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Valine 44 and Valine 45 of Human Glutiathione Sythetase are Key for Subunit Stability and Negative Cooperativity (open access)

Valine 44 and Valine 45 of Human Glutiathione Sythetase are Key for Subunit Stability and Negative Cooperativity

Article discussing Valine 44 and Valine 45 of human glutathione synthetase as the key for subunit stability and negative cooperativity.
Date: July 8, 2011
Creator: Slavens, Kerri D.; Brown, Teresa R.; Barakat, Khaldoon A.; Cundari, Thomas R., 1964- & Anderson, Mary E.
Object Type: Article
System: The UNT Digital Library
Gold, Silver, and Copper Nanoparticles Stabilized in Biocompatible Aqueous Media (open access)

Gold, Silver, and Copper Nanoparticles Stabilized in Biocompatible Aqueous Media

Patent relating to gold, silver, and copper nanoparticles stabilized in biocompatible aqueous media.
Date: December 30, 2009
Creator: Omary, Mohammad A.; Hu, Zhibing; Marpu, Sreekar & Elbjeirami, Oussama
Object Type: Patent
System: The UNT Digital Library
Reference materials for phase equilibrium studies. 1. Liquid–liquid equilibria (IUPAC Technical Report) (open access)

Reference materials for phase equilibrium studies. 1. Liquid–liquid equilibria (IUPAC Technical Report)

This article is the first of three projected IUPAC Technical Reports resulting from IUPAC Project 2011-037-2-100 (Reference Materials for Phase Equilibrium Studies). This report proposes seven systems for liquid–liquid equilibrium studies, covering the four most common categories of binary mixtures: aqueous systems of moderate solubility, non-aqueous systems, systems with low solubility, and systems with ionic liquids.
Date: July 8, 2021
Creator: Bazyleva, Ala; Acree, William E. (William Eugene); Chirico, Robert D.; Diky, Vladimir; Hefter, Glenn T.; Jacquemin, Johan et al.
Object Type: Article
System: The UNT Digital Library
AFLOW-QHA3P: Robust and automated method to compute thermodynamic properties of solids (open access)

AFLOW-QHA3P: Robust and automated method to compute thermodynamic properties of solids

Article introducing the quasiharmonic approximation three-phonon method to calculate the thermodynamic properties of both nonmetallic and metallic compounds. This study demonstrates that QHA3P is an ideal framework for the high-throughput prediction of finite-temperature material properties, combining the accuracy of QHA with the computational efficiency of SC-QHA.
Date: July 8, 2019
Creator: Nath, Pinku; Usanmaz, Demet; Hicks, David; Oses, Corey; Fornari, Marco; Buongiorno Nardelli, Marco et al.
Object Type: Article
System: The UNT Digital Library