Catalog |
name |
Description |
price |
R-C-5617 |
Fe3O4 nanorods length:100~300nm,diameter:50nm |
Fe3O4 nanorods have many important applications. Due to their magnetic and shape controllability, they can be used in fields such as magnetic separation, drug delivery, and magnetic resonance imaging. In addition, Fe3O4 nanorods can also be used to prepare new materials such as batteries, catalysts, sensors, etc. |
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R-C-5627 |
Fe2O3 nanosheets |
Fe2O3 nanocrystals,Diameter to thickness ratio greater than 5,Chip diameter less than 10 microns,Fe2O3 nanosheets refer to the nano-scale plate-like structures composed of iron oxide (Fe2O3).Iron oxide is an important metal oxide,with common crystal phases such as α-Fe2O3 (hematite) and γ-Fe2O3 (magnetic iron oxide).Fe2O3 nanosheets can be used as catalyst carriers, providing efficient active surfaces in chemical reactions.They can also be applied in electrochemical devices such as batteries and electrochemical sensors to improve energy storage and sensing performance. |
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R-C-5665 |
Fe3O4@Au 200nm |
Fe3O4@Au core/shell nanoparticles have unique magnetic and optical properties.These nanoparticles are used for biomedical applications, such as magnetic resonance imaging,photothermal therapy,controlled drug delivery, protein separation,biosensors,DNA detection,and immunosensors. |
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R-C-5732 |
FFNPs |
nanoscale zerovalent iron (Fe0-NPs) has gained prominence for environmental remediation,especially for the remediation of contaminants that are susceptible to reductive transformation such as azo dyes, especially,Agglomeration of magnetic metal nanoparticles takes place primarily through direct interparticle interactions. |
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R-C-5811 |
MnFe2O4 |
MnFe2O4 is a compound known as manganese ferrite or manganese iron oxide.MnFe2O4 is a ferrimagnetic material, meaning it has a permanent magnetic moment even in the absence of an external magnetic field. This makes it suitable for applications in magnetic storage devices, sensors, and electronics. |
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R-C-6181 |
Fe304@MnO2 100nm |
Fe304@MnO2 NPS Usually composed of an internal iron trioxide (Fe304) core and an external manganese dioxide (MnO2)shell.The design of the core-shell structure enables these nanoparticles to possess both the magnetism of Fe304 and the high electrochemical activity and catalytic performance of MnO2.The formation of core-shell structure plays a crucial role in the performance of nanoparticles. |
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