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A lattice Boltzmann model for squirmers, , , , and . The Journal of Chemical Physics, 150 (14): 144110 (2019)Hydrodynamic mobility reversal of squirmers near flat and curved surfaces, , , and . Soft Matter, 15 (29): 5908--5920 (2019)An extensible lattice Boltzmann method for viscoelastic flows : complex and moving boundaries in Oldroyd-B fluids, , , and . The European physical journal. E, Soft matter, 44 (1): 1 (2021)In situ microscopy of the self-assembly of branched nanocrystals in solution, , , , , , and . Nature communications, (2016)The Raspberry model for hydrodynamic interactions revisited. II. The effect of confinement, , , and . Journal of chemical physics, 143 (8): 084108 (2015)The raspberry model for hydrodynamic interactions revisited. I. Periodic arrays of spheres and dumbbells, , , and . Journal of chemical physics, 143 (8): 084107 (2015)Reducing spurious flow in simulations of electrokinetic phenomena, , , and . Journal of chemical physics, 145 (4): 044901 (2016)Phase behavior of a family of truncated hard cubes, , , and . Journal of chemical physics, 142 (5): 054904 (2015)Ionic screening and dissociation are crucial for understanding chemical self-propulsion in polar solvents, , , and . Soft matter, 13 (6): 1200-1222 (2017)Nanoparticle Translocation through Conical Nanopores: A Finite Element Study of Electrokinetic Transport, , , and . Macromolecular Theory and Simulations, 26 (1): 1600051 (September 2016)