Iron-doped Nanotubes

Iron-doped nanotubes are nanoscale tubular materials that contain iron atoms or iron-based species within, on, or substituted into their structure, combining a high-aspect-ratio framework with the chemical and physical effects of iron. Doping modifies the nanotube’s local composition and electronic structure, while the location, concentration, and oxidation state of iron influence properties such as surface reactivity, conductivity, magnetism, and stability. In chemistry, these materials are investigated as tunable catalysts, adsorbents, sensing platforms, and components of functional nanocomposites, where controlled iron incorporation can create active sites and tailor performance for reactions, separations, and energy-related processes.

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Research

JoVE Journal - Chemistry

Synthesis and Characterization of Fe-doped Aluminosilicate Nanotubes with Enhanced Electron Conductive Properties

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Cited by 3 •

2016

Here, we present a protocol to synthesize and characterize Fe-doped aluminosilicate nanotubes. The materials are obtained by either sol-gel synthesis upon addition of FeCl3•6H2O to the mixture containing the Si and Al precursors or by post-synthesis ionic exchange of preformed aluminosilicate nanotubes.

Synthesis and Functionalization of Nitrogen-doped Carbon Nanotube Cups with Gold Nanoparticles as Cork Stoppers

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Cited by 10 •

2013

We discussed the synthesis of individual graphitic nanocups using a series of techniques including chemical vapor deposition, acid oxidation and probe-tip sonication. By citrate reduction of HAuCl4, the graphitic nanocups were effectively corked with gold nanoparticles due to the chemically reactive edges of the cups.

Fabrication, Densification, and Replica Molding of 3D Carbon Nanotube Microstructures

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Cited by 7 •

2012

We present methods for fabrication of patterned microstructures of vertically aligned carbon nanotubes (CNTs), and their use as master molds for production of polymer microstructures with organized nanoscale surface texture. The CNT forests are densified by condensation of solvent onto the substrate, which significantly increases their packing density and enables self-directed formation of 3D shapes.

Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes

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Cited by 3 •

2022

This article demonstrates how to prepare and administer transferrin-bound nonradioactive isotopic iron for studies of iron transport in mouse pregnancy. The approach for quantifying isotopic iron in fetoplacental compartments is also described.

Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production

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Cited by 3 •

2021

Here, we present a protocol to synthesize Co nanoparticles supported on carbon nanotubes with Co- and N- dopants for hydrogen productions.

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