Project supported by the National Natural Science Foundation of China (Grant Nos. 12074238, 11974232, and 11774212)。
Magnetic microbubbles(MMBs) have great potential applications in drug delivery and target therapy because they can be controlled by magnetic fields. In this paper, dynamic equations are derived by Lagrangian formalism...
The physical characterization of a colloidal system of superficially modified magnetic nanoparticles (MNPs) is presented. The system consists of oleic acid-coated iron oxide nanoparticles (OAMNP) suspended in water. A...
support with the graphical design of the "FFANS" web page
The phase transition between a massive dense phase and a diluted superparamagnetic phase has been studied by means of a direct molecular dynamics simulation. The equilibrium structures of the ferrofluid aggregate nucl...
supported by the National Natural Science Foundation of China (Grant Nos. 11274091 and 11274092);the Fundamental Research Funds for the Central Universities of Hohai University, China (Grant No. 2011B11014)
We propose a novel optical intensity modulator based on the combination of a symmetrical metal cladding optical waveguide (SMCW) and ferrofluid, where the ferrofluid is sealed in the waveguide to act as a guiding la...
Project supported by the Shanghai Leading Academic Discipline Project of China (Grant No. B107)
Based on a lognormal particle size distribution, this paper makes a model analysis on the polydispersity effects on the magnetization behaviour of diluted ferrofluids. Using a modified Langevin relationship for the lo...