Hypothesis: Optimizing interfacial positioning of crosslinkers within a reactive self-assembled hexagonal lyotropic liquid crystals (HLLC) system could assist in retaining the hexagonal structure during polymerization and thereby improving water filtration performances of the as-synthesized nanofiltration membranes.
Experiments: The positioning of the hydrophilic crosslinker, poly (ethylene glycol) diacrylate (PEGDA), within the reactive HLLC system was systematically investigated using H and C solid nuclear magnetic resonance (NMR) and small angle X-ray scattering (SAXS) techniques. The structural variation and water filtration performances of these HLLC systems with/without crosslinkers after polymerization were further studied using grazing incidence SAXS (GISAXS) and crossflow filtration tests, respectively.
J Phys Chem C Nanomater Interfaces
October 2024
Solution-processed nanomaterials can be assembled by a range of interfacial techniques, including as stabilizers in Pickering emulsions. Two-dimensional (2D) materials present a promising route toward nanosheet-stabilized emulsions for functional segregated networks, while also facilitating surface energy studies. Here, we demonstrate emulsions stabilized by the 2D materials including the transition metal carbide MXene, titanium carbide (TiCT ), and develop an approach for measurement of nanosheet surface energy based on emulsion inversion.
View Article and Find Full Text PDFBackground: Multiple Sclerosis (MS) is a chronic neurodegenerative disease of the central nervous system with a significant impact on mobility and balance function. Telerehabilitation is an emerging branch of telemedicine which has the potential to deliver rehabilitation remotely through the use of information and communication technology. The aim of this systematic literature review and meta-analysis is to synthesise and analyse the evidence on the effectiveness of telerehabilitation in improving mobility and balance function in MS and to determine its feasibility.
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