Characterization of magnetic nanoparticle by dynamic light scattering
Характеризация магнитных наночастиц методом динамического рассеяния света
2013-09-08
SCID: 54.1/wrpsdx8n
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Z-averagecolloidal stabilitydynamic light scatteringmagnetic nanoparticlessize distribution
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Abstract (AI)
Here we provide a complete review on the use of dynamic light scattering (DLS) to study the size distribution and colloidal stability of magnetic nanoparticles (MNPs). The mathematical analysis involved in obtaining size information from the correlation function and the calculation of Z-average are introduced. Contributions from various variables, such as surface coating, size differences, and concentration of particles, are elaborated within the context of measurement data. Comparison with other sizing techniques, such as transmission electron microscopy and dark-field microscopy, revealed both the advantages and disadvantages of DLS in measuring the size of magnetic nanoparticles. The self-assembly process of MNP with anisotropic structure can also be monitored effectively by DLS.
Key Findings
1
Compared with transmission electron microscopy and dark-field microscopy, DLS has distinct advantages and disadvantages for magnetic nanoparticle sizing.
2
DLS can effectively monitor self-assembly of magnetic nanoparticles with anisotropic structures.
3
Dynamic light scattering (DLS) can characterize magnetic nanoparticle size distributions and colloidal stability.
4
Surface coating, particle-size differences, and particle concentration substantially influence DLS measurement data for magnetic nanoparticles.
5
The review explains extracting nanoparticle size from correlation functions and calculating the Z-average diameter.
Research Object
magnetic nanoparticles (MNPs) and their colloidal assemblies
Research Subject
size distribution, colloidal stability, and self-assembly behavior of magnetic nanoparticles as characterized by dynamic light scattering
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2013-09-08
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