The formation of particle clusters can substantially modify the dynamics and mechanical properties of suspensions in both two and three dimensions. While it has been well established that large network-spanning clusters increase the rigidity of particle systems, it is still unclear how the presence of localized nonpercolating clusters affects the dynamics and mechanical properties of particle suspensions. Here, we introduce self-assembled localized particle clusters at a fluid-fluid interface by mixing a fraction of Janus particles in a monolayer of homogeneous colloids. Each Janus particle binds to a few nearby homogeneous colloids, resulting in numerous small clusters uniformly distributed across the interface. Using a custom magnetic rod interfacial stress rheometer, we apply linear oscillatory shear to the particle-laden fluid interface. By analyzing the local affine deformation of particles from optical microscopy, we show that particles in localized clusters experience substantially lower shear-induced stretching than their neighbors outside clusters. We hypothesize that such heterogeneous dynamics induced by particle clusters increase the effective surface coverage of particles, which in turn enhances the shear moduli of the interface, as confirmed by direct interfacial rheological measurements. Our study illustrates the microscopic dynamics of small clusters in a shear flow and reveals their profound effects on the macroscopic rheology of particle-laden fluid interfaces. Our findings open an avenue for designing interfacial materials with improved mechanical properties via the control of formation of localized particle clusters.
机构:Lawrence Berkeley Lab, Materials, & Molecular Research Div,, Berkeley, CA, USA, Lawrence Berkeley Lab, Materials & Molecular Research Div, Berkeley, CA, USA
DOSANJH, S
HUMPHREY, JAC
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机构:Lawrence Berkeley Lab, Materials, & Molecular Research Div,, Berkeley, CA, USA, Lawrence Berkeley Lab, Materials & Molecular Research Div, Berkeley, CA, USA
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Sheffield Hallam Univ, Mat & Engn Res Inst, Sheffield S1 1WB, S Yorkshire, EnglandSheffield Hallam Univ, Mat & Engn Res Inst, Sheffield S1 1WB, S Yorkshire, England
Lishchuk, S. V.
Halliday, I.
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Sheffield Hallam Univ, Mat & Engn Res Inst, Sheffield S1 1WB, S Yorkshire, EnglandSheffield Hallam Univ, Mat & Engn Res Inst, Sheffield S1 1WB, S Yorkshire, England
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Boston Univ, Dept Mech Engn, Boston, MA 02215 USABoston Univ, Dept Mech Engn, Boston, MA 02215 USA
Kim, Brian L.
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Rendos, Abigail
Ganesh, Prithika
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Boston Univ, Dept Mech Engn, Boston, MA 02215 USABoston Univ, Dept Mech Engn, Boston, MA 02215 USA
Ganesh, Prithika
Brown, Keith A.
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Boston Univ, Dept Mech Engn, Boston, MA 02215 USA
Boston Univ, Div Mat Sci & Engn, Boston, MA 02215 USA
Boston Univ, Phys Dept, Boston, MA 02215 USABoston Univ, Dept Mech Engn, Boston, MA 02215 USA
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CUNY City Coll, Benjamin Levich Inst, New York, NY 10031 USA
CUNY City Coll, Dept Phys, New York, NY 10031 USACUNY City Coll, Benjamin Levich Inst, New York, NY 10031 USA
Chen, Weikang
Koplik, Joel
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CUNY City Coll, Benjamin Levich Inst, New York, NY 10031 USA
CUNY City Coll, Dept Phys, New York, NY 10031 USACUNY City Coll, Benjamin Levich Inst, New York, NY 10031 USA
Koplik, Joel
Kretzschmar, Ilona
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CUNY City Coll, Dept Chem Engn, New York, NY 10031 USACUNY City Coll, Benjamin Levich Inst, New York, NY 10031 USA