Matches in SemOpenAlex for { <https://semopenalex.org/work/W2026013708> ?p ?o ?g. }
- W2026013708 endingPage "21" @default.
- W2026013708 startingPage "1" @default.
- W2026013708 abstract "We review the use of Monte Carlo simulations in the description of magnetic nanoparticles dispersed in a liquid carrier. Our main focus is the use of theory and simulation as tools for the description of the properties of ferrofluids. In particular, we report on the influence of polydispersity and short-range interaction on the self-organization of nanoparticles. Such contributions are shown to be extremely important for systems characterized by particles with diameters smaller than 10 nm. A new 3D polydisperse Monte Carlo implementation for biocompatible magnetic colloids is proposed. As an example, theoretical and simulation results for an ionic-surfacted ferrofluid dispersed in a NaCl solution are directly compared to experimental data (transmission electron microscopy — TEM, magneto-transmissivity, and electron magnetic resonance — EMR). Our combined theoretical and experimental results suggest that during the aging process two possible mechanisms are likely to be observed: the nanoparticle's grafting decreases due to aggregate formation and the Hamaker constant increases due to oxidation. In addition, we also briefly discuss theoretical agglomerate formation models and compare them to experimental data. ► Critical review of the use of Monte Carlo methods in the description of magnetic nanoparticles. ► Theoretical agglomerate formation models are discussed and compared to simulations and experimental data. ► Use of EMR to extract the agglomerate's chain size. ► New procedure to model the ionic-surfacted layer relating the intensity of steric and ionic repulsions. ► Aging process explained through modifications of grafting (because of chain formation) or Hamaker constant (due to oxidation)." @default.
- W2026013708 created "2016-06-24" @default.
- W2026013708 creator A5008307962 @default.
- W2026013708 creator A5067671511 @default.
- W2026013708 creator A5067875318 @default.
- W2026013708 creator A5083418342 @default.
- W2026013708 creator A5091785005 @default.
- W2026013708 date "2013-05-01" @default.
- W2026013708 modified "2023-10-14" @default.
- W2026013708 title "Chain formation and aging process in biocompatible polydisperse ferrofluids: Experimental investigation and Monte Carlo simulations" @default.
- W2026013708 cites W1510613202 @default.
- W2026013708 cites W1530399091 @default.
- W2026013708 cites W1608702326 @default.
- W2026013708 cites W1635180900 @default.
- W2026013708 cites W1639571158 @default.
- W2026013708 cites W1832396441 @default.
- W2026013708 cites W1963810837 @default.
- W2026013708 cites W1965000897 @default.
- W2026013708 cites W1966219091 @default.
- W2026013708 cites W1966857896 @default.
- W2026013708 cites W1968112014 @default.
- W2026013708 cites W1971866848 @default.
- W2026013708 cites W1973577850 @default.
- W2026013708 cites W1974118061 @default.
- W2026013708 cites W1974656799 @default.
- W2026013708 cites W1976024685 @default.
- W2026013708 cites W1981589292 @default.
- W2026013708 cites W1983866092 @default.
- W2026013708 cites W1983942057 @default.
- W2026013708 cites W1984395192 @default.
- W2026013708 cites W1985814440 @default.
- W2026013708 cites W1986111891 @default.
- W2026013708 cites W1986479934 @default.
- W2026013708 cites W1987617972 @default.
- W2026013708 cites W1989248107 @default.
- W2026013708 cites W1990890446 @default.
- W2026013708 cites W1991668326 @default.
- W2026013708 cites W1991846896 @default.
- W2026013708 cites W1996677628 @default.
- W2026013708 cites W1999480349 @default.
- W2026013708 cites W1999902224 @default.
- W2026013708 cites W2000289473 @default.
- W2026013708 cites W2000769153 @default.
- W2026013708 cites W2001131788 @default.
- W2026013708 cites W2002244127 @default.
- W2026013708 cites W2002955506 @default.
- W2026013708 cites W2004402295 @default.
- W2026013708 cites W2004806726 @default.
- W2026013708 cites W2005894732 @default.
- W2026013708 cites W2008231336 @default.
- W2026013708 cites W2008972134 @default.
- W2026013708 cites W2009941557 @default.
- W2026013708 cites W2012642171 @default.
- W2026013708 cites W2014721045 @default.
- W2026013708 cites W2014777534 @default.
- W2026013708 cites W2015206473 @default.
- W2026013708 cites W2016282119 @default.
- W2026013708 cites W2016559289 @default.
- W2026013708 cites W2017408836 @default.
- W2026013708 cites W2017409940 @default.
- W2026013708 cites W2017461150 @default.
- W2026013708 cites W2017755005 @default.
- W2026013708 cites W2018197189 @default.
- W2026013708 cites W2020375406 @default.
- W2026013708 cites W2021033681 @default.
- W2026013708 cites W2024986178 @default.
- W2026013708 cites W2029179588 @default.
- W2026013708 cites W2031605112 @default.
- W2026013708 cites W2035833236 @default.
- W2026013708 cites W2037914844 @default.
- W2026013708 cites W2043989730 @default.
- W2026013708 cites W2044791030 @default.
- W2026013708 cites W2047855476 @default.
- W2026013708 cites W2049360783 @default.
- W2026013708 cites W2051281008 @default.
- W2026013708 cites W2051340132 @default.
- W2026013708 cites W2051621654 @default.
- W2026013708 cites W2052701071 @default.
- W2026013708 cites W2056238030 @default.
- W2026013708 cites W2056760934 @default.
- W2026013708 cites W2060163612 @default.
- W2026013708 cites W2061976748 @default.
- W2026013708 cites W2065016254 @default.
- W2026013708 cites W2068957875 @default.
- W2026013708 cites W2070901071 @default.
- W2026013708 cites W2072760534 @default.
- W2026013708 cites W2074645344 @default.
- W2026013708 cites W2075220101 @default.
- W2026013708 cites W2077160366 @default.
- W2026013708 cites W2079042437 @default.
- W2026013708 cites W2079182389 @default.
- W2026013708 cites W2080590224 @default.
- W2026013708 cites W2081281092 @default.
- W2026013708 cites W2081780231 @default.
- W2026013708 cites W2083606656 @default.
- W2026013708 cites W2084512196 @default.
- W2026013708 cites W2084931592 @default.
- W2026013708 cites W2086109578 @default.