Search Results - "Licon Bernal, Edxon E."
-
1
3D Electrophoresis‐Assisted Lithography (3DEAL): 3D Molecular Printing to Create Functional Patterns and Anisotropic Hydrogels
Published in Advanced functional materials (11-04-2018)“…The ability to easily generate anisotropic hydrogel environments made from functional molecules with microscale resolution is an exciting possibility for the…”
Get full text
Journal Article -
2
3D Electrophoresis‐Assisted Lithography (3DEAL): 3D Molecular Printing to Create Functional Patterns and Anisotropic Hydrogels
Published in Advanced functional materials (06-06-2018)“…The ability to easily generate anisotropic hydrogel environments made from functional molecules with microscale resolution is an exciting possibility for the…”
Get full text
Journal Article -
3
Trace ammonium removal by liquid-liquid membrane contactors as water polishing step of water electrolysis for hydrogen production from a wastewater treatment plant effluent
Published in Journal of chemical technology and biotechnology (1986) (01-12-2016)“…BACKGROUND This work evaluates hollow fiber liquid–liquid membrane contactors (HFMC) as a polishing step for the removal of low levels of ammonium from water…”
Get full text
Journal Article Publication -
4
Implications of inhomogeneous distribution of concentration polarization for interpretation of pressure-driven membrane measurements
Published in Journal of membrane science (15-12-2016)Get full text
Journal Article -
5
3D Electrophoresis-assisted lithography (3DEAL): 3D molecular printing to create functional patterns and anisotropic hydrogels
Published in Advanced functional materials (11-04-2018)“…The ability to easily generate anisotropic hydrogel environments made from functional molecules with microscale resolution is an exciting possibility for the…”
Get full text
Journal Article -
6
Model of Forward Osmosis through composite/asymmetric membranes: Effects of support inhomogeneity and solution non-ideality
Published in Journal of membrane science (01-05-2020)“…The processes of Forward Osmosis and Pressure-Retarded Osmosis are strongly influenced by Internal Concentration Polarization occurring within their porous…”
Get full text
Journal Article