3 Matching Results

Results open in a new window/tab.

Abraham Model Correlations for Triethylene Glycol Solvent Derived from Infinite Dilution Activity Coefficient, Partition Coefficient and Solubility Data Measured at 298.15 K (open access)

Abraham Model Correlations for Triethylene Glycol Solvent Derived from Infinite Dilution Activity Coefficient, Partition Coefficient and Solubility Data Measured at 298.15 K

This article describes the use of a gas chromatographic headspace analysis method to experimentally determine gas-to-liquid partition coefficients and infinite dilution activity coefficients for 29 liquid organic solutes dissolved in triethylene glycol at 298.15 K.
Date: November 9, 2017
Creator: Sedov, Igor A.; Magsumov, Timur I.; Hart, Erin; Ramirez, Ashley M.; Cheeran, Sarah; Barrera, Maribel et al.
System: The UNT Digital Library
Form and Function of the Vertebrate and Invertebrate Blood-Brain Barriers (open access)

Form and Function of the Vertebrate and Invertebrate Blood-Brain Barriers

Article reviewing blood-brain barriers (BBBs) in their various forms in both invertebrates and vertebrates, with an emphasis on the function, evolution, and conditional relevance of popular animal models such as the fruit fly and the zebrafish to mammalian BBB research.
Date: November 9, 2021
Creator: Dunton, Alicia D.; Göpel, Torben; Ho, Dao H. & Burggren, Warren W.
System: The UNT Digital Library
A lipidomics platform to analyze the fatty acid compositions of non-polar and polar lipid molecular species from plant tissues: Examples from developing seeds and seedlings of pennycress (Thlaspi arvense) (open access)

A lipidomics platform to analyze the fatty acid compositions of non-polar and polar lipid molecular species from plant tissues: Examples from developing seeds and seedlings of pennycress (Thlaspi arvense)

Article describes a stepwise targeted lipidomics approach to characterize the polar and non-polar lipid classes using complementary LC-MS methods. This lipidomics workflow was applied to developing, mature, and germinated pennycress seeds/seedlings and found unexpected changes among several lipid molecular species.
Date: November 9, 2022
Creator: Romsdahl, Trevor B.; Cocuron, Jean-Christophe; Pearson, Mackenzie J.; Alonso, Ana Paula & Chapman, Kent Dean
System: The UNT Digital Library