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- W2057730810 abstract "Colloidal crystals are of extreme importance for applied research and for fundamental studies in statistical mechanics. Long-range attractive interactions, such as capillary forces, can drive the spontaneous assembly of such mesoscopic ordered structures. However, long-range attractive forces are very rare in the colloidal realm. Here we report a novel strong, long-ranged attraction induced by a thermal gradient in the presence of a wall. By switching the thermal gradient on and off, we can rapidly and reversibly form stable hexagonal 2D crystals. We show that the observed attraction is hydrodynamic in nature and arises from thermally induced slip flow on particle surfaces. We used optical tweezers to measure the force law directly and compare it to an analytical prediction based on Stokes flow driven by Marangoni-like forces." @default.
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- W2057730810 date "2009-03-05" @default.
- W2057730810 modified "2023-10-10" @default.
- W2057730810 title "Colloidal Attraction Induced by a Temperature Gradient" @default.
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- W2057730810 doi "https://doi.org/10.1021/la8038335" @default.
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