Applied Mathematics and Mechanics (English Edition) ›› 2025, Vol. 46 ›› Issue (3): 539-554.doi: https://doi.org/10.1007/s10483-025-3226-9
收稿日期:
2024-11-11
修回日期:
2025-01-07
发布日期:
2025-03-03
Tianyu YUAN1,†(), L. P. LIU2,3, Jianxiang WANG4
Received:
2024-11-11
Revised:
2025-01-07
Published:
2025-03-03
Contact:
Tianyu YUAN
E-mail:tyyuan777@163.com
Supported by:
中图分类号:
. [J]. Applied Mathematics and Mechanics (English Edition), 2025, 46(3): 539-554.
Tianyu YUAN, L. P. LIU, Jianxiang WANG. Effective diffusivity of a Janus sphere in an external field[J]. Applied Mathematics and Mechanics (English Edition), 2025, 46(3): 539-554.
[1] | EINSTEIN, A. On the motion of small particles suspended in liquids at rest required by the molecular-kinetic theory of heat. Annalen Der Physik, 17(549-560), 208 (1905) |
[2] | PERRIN, J. Les preuves de la ralite mol culaire. Comptes Rendus, 147, 530–532 (1908) |
[3] | MOZAFFARI, A., SHARIFI-MOOD, N., KOPLIK, J., and MALDARELLI, C. Self-diffusiophoretic colloidal propulsion near a solid boundary. Physics of Fluids, 28(5), 053107 (2016) |
[4] | TĂLEA-CODREAN, M. and LAUGE, E. Artificial chemotaxis of phoretic swimmers: instantaneous and long-time behaviour. Journal of Fluid Mechanics, 856, 921–957 (2018) |
[5] | BEHREND, C. J., ANKER, J. N., MCNAUGHTON, B. H., and KOPELMAN, R. Microrheology with modulated optical nanoprobes (MOONs). Journal of Magnetism and Magnetic Materials, 293(1), 663–670 (2005) |
[6] | KODA, M., YAJIMA, S., AMAYA, S., CHEN, W. L., CHUANG, H. S., TAKAMURA, E., SAKAMOTO, H., and SUYE, S. A novel RNA sensor based on dynamics of oligonucleotide-functionalized Janus particles driven by rotational diffusion. Sensors and Actuators A: Physical, 379, 115920 (2024) |
[7] | GLASER, N., ADAMS, D. J., BÖKER, A., and KRAUSCH, G. Janus particles at liquid-liquid interfaces. Langmuir, 22(12), 5227–5229 (2006) |
[8] | WANG, K. L., WANG, G., LU, C. J., and WANG, Y. Preparation of amphiphilic Janus particles and their application in stabilising foams. Micro & Nano Letters, 13(3), 397–402 (2018) |
[9] | ANTHONY, S. M., KIM, M., and GRANICK, S. Single-particle tracking of Janus colloids in close proximity. Langmuir, 24(13), 6557–61 (2008) |
[10] | JIANG, S., YAN, J., WHITMER, J. K., ANTHONY, S. M., LUIJTEN, E., and GRANICK, S. Orientationally glassy crystals of Janus spheres. Physical Review Letters, 112(21), 218301 (2014) |
[11] | HSIAO, L. C., SAHA-DALAL, I., LARSON, R. G., and SOLOMON, M. J. Translational and rotational dynamics in dense suspensions of smooth and rough colloids. Soft Matter, 12(148), 9229–9436 (2017) |
[12] | HOWSE, J. R., JONES, R. A. L., RYAN, A. J., GOUGH, T., VAFABAKHSH, R., and GOLESTANIAN, R. Self-motile colloidal particles: from directed propulsion to random walk. Physical Review Letters, 99(4), 048102 (2007) |
[13] | CHATTERJEE, P., TANG, E. M., KARANDE, P., and UNDERHILL, P. T. Propulsion of catalytic Janus spheres in viscosified newtonian solutions. Physical Review Fluids, 3(1), 014101 (2018) |
[14] | RASHIDI, A. and WIRTH, C. L. Motion of a Janus particle very near a wall. The Journal of Chemical Physics, 147(22), 224906 (2017) |
[15] | RASHIDI, A., RAZAVI, S., and WIRTH, C. L. Influence of cap weight on the motion of a Janus particle very near a wall. Physical Review E, 101(4), 042606 (2020) |
[16] | WANG, D. P., ZHU, Y. L., ZHAO, Y. H., LI, C. Y., MUKHOPADHYAY, A., SUN, Z. Y., KOYNOV, K., and BUTT, H. J. Brownian diffusion of individual Janus nanoparticles at water/oil interfaces. ACS Nano, 14(8), 10095–10103 (2020) |
[17] | CUI, X., WANG, J., and XIA, G. D. Enhanced thermal conductivity of nanofluids by introducing Janus particles. Nanoscale, 14(1), 99–107 (2022) |
[18] | YUAN, W., LIU, L., and SHAN, J. W. Tunable acoustic attenuation in dilute suspensions of subwavelength, non-spherical magnetic particles, Journal of Applied Physics, 121(4), 045110 (2017) |
[19] | YUAN, W., TUTUNCUOGLU, G., MOHABIR, A., LIU, L., FELDMAN, L., FILLER, M., and SHAN, J. W. Contactless electrical and structuralcharacterization of semiconductor nanowires with axially modulated doping profiles. Small, 15(15), 1805140 (2019) |
[20] | GANGWAL, S., CAYRE, O. J., BAZANT, M. Z., and VELEV, O. D. Induced-charge electrophoresis of metallodielectric particles. Physical Review Letters, 100 (5), 058302 (2008) |
[21] | MCNAUGHTON, B. H., SHLOMI, M., KINNUNEN, P., CIONCA, C., PEI, S. N., CLARKE, R., ARGYRAKIS, P., and KOPELMAN, R. Magnetic confinement of Brownian rotation to a single axis and application to Janus and cluster microparticles. Applied Physics Letters, 97(14) (2010) |
[22] | TO, C. W., CHEN, T. Y., YEH, J. W., and CAI, S. C. Experimental investigation of mesoscopic heterogeneous motion of laser-activated self-propelling Janus particles in suspension. Physical Review E, 96(6), 062601 (2017) |
[23] | YUAN, T., YUAN, W., LIU, L., and SHAN, J. W. Electric-field-controlled diffusion of anisotropic particles: theory and experiment. Journal of Fluid Mechanics, 924, A42 (2021) |
[24] | NAVIER, C. L. M. H. Mémoire sur les lois du mouvement des fluides. Mémoires de l'Académie Royale des Sciences de l'Institut de France, 6, 389–440 (1823) |
[25] | KIM, S. and KARRILA, S. J. Microhydrodynamics: Principles and Selected Applications, Butterworth-Heinemann, Boston (2013) |
[26] | RAMACHANDEAN, A. and KHAIR, A. S. The dynamics and rheology of a dilute suspension of hydrodynamically Janus spheres in a linear flow. Journal of Fluid Mechanics, 633, 233–269 (2009) |
[27] | VAN KAMPEN, N. Chapter viii-the Fokker Planck equation. Stochastic Processes in Physics and Chemistry, 3rd ed., Elsevier, Amsterdam, 193–218 (2007) |
[28] | EVANS, L. An Introduction to Stochastic Differential Equations, American Mathematical Society, Providence (2012) |
[29] | KUBO, R. The fluctuation-dissipation theorem. Reports on Progress in Physics, 29(1), 255–284 (1966) |
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