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SECTION D: THEORY AND MODELING

Coffee Ring Effect During Drying of Colloid Drop: Experiment and Computer Simulation

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Pages 47-53 | Received 15 Jul 2014, Accepted 30 Sep 2014, Published online: 25 Mar 2015

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A. V. Makaev, A. A. Esin, E. A. Mingaliev & V. Ya. Shur. (2018) Polarization reversal in lithium niobate using electrodes of dendrite shape created by drying drops of protein-NaCl solution. Ferroelectrics 525:1, pages 161-167.
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V. Ya. Shur, E. A. Mingaliev, M. S. Kosobokov, A. V. Makaev & V. R. Karpov. (2017) Deposition of droplets by pyroelectric field created by lithium tantalate with tailored domain structure. Ferroelectrics 508:1, pages 58-64.
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Asha Tongbram & Amitabha Bhattacharyya. (2023) Surface properties and coffee drop formation of natural surfactant: a case study of Albizia procera . Tenside Surfactants Detergents 60:1, pages 82-94.
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Ashwani Kumar, Debasis Sen, Avik Das & Jitendra Bahadur. (2022) Pattern of an Evaporated Colloidal Droplet on a Porous Membrane Dictated by Competitive Processes of Flow and Absorption. Langmuir 38:23, pages 7121-7128.
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Junxiang Yang, Hyundong Kim, Chaeyoung Lee, Sangkwon Kim, Jian Wang, Sungha Yoon, Jintae Park & Junseok Kim. (2020) Phase-field modeling and computer simulation of the coffee-ring effect. Theoretical and Computational Fluid Dynamics 34:5-6, pages 679-692.
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Surjendu Bikash Dutta, Rashmi Shrivastava, Hemant Krishna, Khan Mohammad Khan, Sharad Gupta & Shovan K. Majumder. (2019) Nanotrap-Enhanced Raman Spectroscopy: An Efficient Technique for Trace Detection of Bioanalytes. Analytical Chemistry 91:5, pages 3555-3560.
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Parul Katiyar & Jayant K. Singh. (2019) Evaporation induced self-assembly of different shapes and sizes of nanoparticles: A molecular dynamics study. The Journal of Chemical Physics 150:4.
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