Search Results - SILVER, L. M~
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Green synthesis of silver and copper nanoparticles using ascorbic acid and chitosan for antimicrobial applications
Published 2014“…Surface zeta potentials were positive for all nanoparticles produced and these varied from 27.8 to 33.8 mV. Antibacterial activities of Ag, Cu, mixtures of Ag and Cu, and Ag/Cu bimetallic nanoparticles were tested using Bacillus subtilis and Escherichia coli. …”
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Monodispersed biodegradable microparticles with wrinkled surface coated with silver nanoparticles for catalytic degradation of organic toxins
Published 2024“…At the Ag-P(EGDA) loading of 2.0 mg/mL, 25 µM of MeB was completely degraded in 6 min. …”
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Polycarbene-bearing membrane surface containing silver species for size and charge selective molecular separation
Published 2022“…The simple surface-modification strategy for blend membranes is adaptable to a variety of other transition metals. Due to the simple fabrication process and inspiring permeability (>80 L/m2/h/), these membranes are economic for the separation of small molecules with good separation efficiency (>95%).…”
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Supplementary information files for "Monodispersed biodegradable microparticles with wrinkled surface coated with silver nanoparticles for catalytic degradation of organic toxins"
Published 2024“…At the Ag-P(EGDA) loading of 2.0 mg/mL, 25 µM of MeB was completely degraded in 6 min. …”
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Supplementary information files for: Polycarbene-bearing membrane surface containing silver species for size and charge selective molecular separation
Published 2022“…The simple surface-modification strategy for blend membranes is adaptable to a variety of other transition metals. Due to the simple fabrication process and inspiring permeability (>80 L/m2/h/), these membranes are economic for the separation of small molecules with good separation efficiency (>95%).…”
Get full text
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The adaptability of the ion binding site by the Ag(I)/Cu(I) periplasmic chaperone SilF.
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Mechanical integration of a PEM fuel cell for a multifunctional aerospace structure
Published 2016“…During dynamic bending (2000 cycles) the structural fuel cell peak power performance dropped 11% from 6.7 watts to 6 watts (3mm deflection at 190N), 23% from 6.3 watts to 4.8 watts (5mm deflection at 270N), and 41% from 7.2 watts to 5 watts (7mm deflection at 350N). …”
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