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Showing 1 to 5 of 5 for “"Nanoparticle heating"”.

  1. A quantitative design and analysis of magnetic nanoparticle heating systems

    … an alternating magnetic field act as localized heating sources due to various loss mechanisms. This effect has been extensively investigated in hypothermia studies over the past decades and has recently been applied at the molecular level to control the dehybridization of DNA molecules. As a …

    mit Repository record for A quantitative design and analysis of magnetic nanoparticle heating systems (opens in a new tab)

  2. Design and construction of a Helmholtz coil apparatus for nanoparticle heating

    … Biomolecules are manipulated by magnetically heating conductive nanoparticles attached to biomolecules within a radio frequency magnetic field generated by a coil. Currently, researchers monitor the effectiveness of this heating with UV/Visible spectroscopy. However, fluorescence spectroscopy …

    mit Repository record for Design and construction of a Helmholtz coil apparatus for nanoparticle heating (opens in a new tab)

  3. Selective heating of multiple nanoparticles as a new strategy for controlled release applications

    Utilization of nanoparticle heating for controlled release application was proposed and its feasibility was explored. The proposed method was formulated by realizing that biomolecule - nanoparticle conjugation is heat sensitive and both their dimensions are in the same length scale. This …

    mit Repository record for Selective heating of multiple nanoparticles as a new strategy for controlled release applications (opens in a new tab)

  4. Radiofrequency heating of nanoclusters and nanoparticles for enzyme activation

    Radiofrequency (RF) fields heat magnetic nanoparticles. Applications include remote drug delivery and noninvasive cancer therapy. The underlying objective is to increase temperatures precisely where desired without heating the surroundings. Before our work, the replicable limit of this precision …

    colostate Repository record for Radiofrequency heating of nanoclusters and nanoparticles for enzyme activation (opens in a new tab)

  5. The synergistic role of light and heat in liquid-based nanoparticle manipulation

    … synergistic tools used in the manipulation of nanoparticles and biomolecules. When optical effects dominate over thermal effects, the motion of nanoparticles can be controlled by optical forces. Here, we study the motion of 100 nm gold particles within a 1D optical potential, created by …

    cambridge Repository record for The synergistic role of light and heat in liquid-based nanoparticle manipulation (opens in a new tab)