We investigate the formation of ringlike deposits in drying drops of DNA. In analogy with the colloidal "coffee rings," DNA is transported to the perimeter by the capillary flow. At the droplet edge, however, DNA forms a lyotropic liquid crystal (LC) with concentric chain orientations to minimize the LC elastic energy. During the final stages of drying, the contact line retracts, and the radial stress causes undulations at the rim that propagate inward through the LC and form a periodic zigzag structure. We examine the phenomenon in terms of a simple model based on LC elasticity.
机构:
Center of Soft Matter Physics and Its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and Its Applications, Beihang University
姜泽超
杨修远
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机构:
Center of Soft Matter Physics and Its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and Its Applications, Beihang University
机构:
Center of Soft Matter Physics and its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and its Applications, Beihang University
Xiuyuan Yang
Zechao Jiang
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机构:
Center of Soft Matter Physics and its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and its Applications, Beihang University
Zechao Jiang
Peihan Lyu
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机构:
Center of Soft Matter Physics and its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and its Applications, Beihang University
Peihan Lyu
Zhaoyu Ding
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机构:
Center of Soft Matter Physics and its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and its Applications, Beihang University
Zhaoyu Ding
Xingkun Man
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机构:
Center of Soft Matter Physics and its Applications, Beihang University
School of Physics, Beihang UniversityCenter of Soft Matter Physics and its Applications, Beihang University