Biosynthesis of Platinum Nanoparticles by Escherichia coli MC4100: Can Such Nanoparticles Exhibit Intrinsic Surface Enantioselectivity?

G Attard, M Casadesús, LE Macaskie, K Deplanche - Langmuir, 2012 - ACS Publications
G Attard, M Casadesús, LE Macaskie, K Deplanche
Langmuir, 2012ACS Publications
The biomanufacture of two types of platinum bionanoparticle (bioNP) using Escherichia coli
MC4100 (1% and 20% by mass metal loading) together with a method for both liberating the
nanoparticles (NPs) from the bacterial layer and their subsequent critical cleaning is
reported. The possibility of an enantiomeric excess of chiral kink sites forming on the surface
of the Pt nanoparticles produced by the bacteria was investigated using the electrooxidation
of d-and l-glucose as the chiral probe. Transmission electron microscopy revealed that the …
The biomanufacture of two types of platinum bionanoparticle (bioNP) using Escherichia coli MC4100(1% and 20% by mass metal loading) together with a method for both liberating the nanoparticles (NPs) from the bacterial layer and their subsequent critical cleaning is reported. The possibility of an enantiomeric excess of chiral kink sites forming on the surface of the Pt nanoparticles produced by the bacteria was investigated using the electrooxidation of d- and l-glucose as the chiral probe. Transmission electron microscopy revealed that the Pt bioNPs (after recovery and cleaning) were typically 2.3 ± 0.7 nm (1% loading) and 4.5 ± 0.7 nm (20% loading) in diameter. The d- and l-glucose electrooxidation measurements did not give rise to any chiral response using either of the Pt bioNPs types but did display differing CV profiles. This suggested that the overall surface morphology of each bioNP could be controlled by the degree of metal loading but that no enantiomeric excess of intrinsically chiral surface kink sites was present.
ACS Publications
以上显示的是最相近的搜索结果。 查看全部搜索结果