Publications
Achieving self-sustained motion of particles in solution with chemical pumps. Robotic Systems and Autonomous Platforms 223-249 (2019).at <https://www.sciencedirect.com/science/article/pii/B978008102260300010X>
Boundary-bound reactions: Pattern formation with and without hydrodynamics. Physical Review E 108, 055103 (2023). Huffman Shum 2023 - Boundary-bound reactions preprint.pdf
Comment on the article by J. Elgeti, U. B. Kaupp, and G. Gompper: Hydrodynamics of sperm cells near surfaces. Biophysical Journal 100, 9, 2318-2320 (2011).
Computational design of microscopic swimmers and capsules: From directed motion to collective behavior. Current Opinion in Colloid & Interface Science 21, 44-56 (2015).
Convective flow reversal in self-powered enzyme micropumps. Proceedings of the National Academy of Sciences of the United States of America 113, 10, 2585-2590 (2016). ortiz-rivera_et_al._-_2016_-_convective_flow_reversal_in_self-powered_enzyme_mi.pdf
Convective self-sustained motion in mixtures of chemically active and passive particles. Langmuir 33, 32, 7873-7880 (2017).
Designing a magnetic micro-robot for transporting stiff filamentous microcargo. Physics of Fluids 36, 081908 (2024). Ghadami Shum 2024 - Designing a magnetic micro-robot.pdf
Designing bioinspired artificial cilia to regulate particle–surface interactions. The Journal of Physical Chemistry Letters 5, 10, 1691-1700 (2014).
Designing synthetic microcapsules that undergo biomimetic communication and autonomous motion. Langmuir 31, 44, 11951-11963 (2015).
The effects of flagellar hook compliance on motility of monotrichous bacteria: A modeling study. Physics of Fluids 24, 6, 061901 (2012).
The N-link swimmer in three dimensions: controllability and optimality results. Acta Applicandae Mathematicae 178, 6 (2022).
Entrainment and scattering in microswimmer-colloid interactions. Physical Review Fluids 2, 11, 113101 (2017). shum_and_yeomans_-_2017_-_entrainment_and_scattering_in_microswimmer-colloid.pdf
Fight the flow: the role of shear in artificial rheotaxis for individual and collective motion. Nanoscale 11, 10944-10951 (2019).
Flow-driven assembly of microcapsules into three-dimensional towers. Langmuir 34, 8, 2890-2899 (2018).
Fluid-driven motion of passive cilia enables the layer to expel sticky particles. Soft Matter 10, 9, 1416-1427 (2014).
Harnessing catalytic pumps for directional delivery of microparticles in microchambers. Nature Communications 8, 14384 (2017). das_et_al_2017_-_harnessing_catalytic_pumps_for_directional_delivery_of_microparticles_in_microchambers.pdf
Harnessing surface-bound enzymatic reactions to organize microcapsules in solution. Science Advances 2, 3, e1501835 (2016). shklyaev_et_al._-_2016_-_harnessing_surface-bound_enzymatic_reactions_to_or.pdf