Sequential Magnetic Mapping of Bacteria Loaded with Pd-Fe Nanoparticles
Magnetic nanoparticles are of widespread use in nanotechnology. Palladium nanoparticles are among the most unusual since they combine magnetism with high catalytic activity. These nanoparticles could be obtained biologically by exposing bacteria to a palladium salt. However, due to the small size an...
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creator | Claxton, James Joudeh, Nadeem Royne, Anja Linke, Dirk Mikheenko, Pavlo |
description | Magnetic nanoparticles are of widespread use in nanotechnology. Palladium nanoparticles are among the most unusual since they combine magnetism with high catalytic activity. These nanoparticles could be obtained biologically by exposing bacteria to a palladium salt. However, due to the small size and weak magnetism, it is challenging to measure their magnetic properties. One of the solutions to enhance their magnetism is to incorporate a small number of iron atoms into them. After this procedure, the nanoparticles and bacteria can be embedded in resin and characterized by magnetic force microscopy. This technique allows imaging cross-sections of the bacteria with nanoparticles but cannot give information from the depth of the sample. Here we report on an approach partially solving this problem. Its novelty lies in measurements of consecutive thin slices of resin, which allows mapping cross-sections of individual bacteria and different parts of the material surrounding the same bacterium. An interesting observed feature is the formation of magnetic chains of nanoparticles outside of the bacteria. |
doi_str_mv | 10.1109/NAP51477.2020.9309619 |
format | Conference Proceeding |
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Palladium nanoparticles are among the most unusual since they combine magnetism with high catalytic activity. These nanoparticles could be obtained biologically by exposing bacteria to a palladium salt. However, due to the small size and weak magnetism, it is challenging to measure their magnetic properties. One of the solutions to enhance their magnetism is to incorporate a small number of iron atoms into them. After this procedure, the nanoparticles and bacteria can be embedded in resin and characterized by magnetic force microscopy. This technique allows imaging cross-sections of the bacteria with nanoparticles but cannot give information from the depth of the sample. Here we report on an approach partially solving this problem. Its novelty lies in measurements of consecutive thin slices of resin, which allows mapping cross-sections of individual bacteria and different parts of the material surrounding the same bacterium. 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source | NORA - Norwegian Open Research Archives |
subjects | bacteria Imaging magnetic force microscopy Magnetic forces magnetic mapping Magnetic resonance imaging Microorganisms Nanoparticles Palladium Palladium nanoparticles Resins |
title | Sequential Magnetic Mapping of Bacteria Loaded with Pd-Fe Nanoparticles |
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