Self-Assembly of Nanoparticles from Evaporating Sessile Droplets: Fresh Look into the Role of Particle/Substrate Interaction

We studied the dependence of solid deposit shape obtained by free drying of sessile drops on particle concentration and Derjaguin–Landau–Verwey–Overbeek (DLVO) particle/substrate interaction. In contrast to previous contributions using pH as a control parameter of interactions, we investigated an un...

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Veröffentlicht in:Langmuir 2020-10, Vol.36 (39), p.11411-11421
Hauptverfasser: Bridonneau, N, Zhao, M, Battaglini, N, Mattana, G, Thévenet, V, Noël, V, Roché, M, Zrig, S, Carn, F
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container_end_page 11421
container_issue 39
container_start_page 11411
container_title Langmuir
container_volume 36
creator Bridonneau, N
Zhao, M
Battaglini, N
Mattana, G
Thévenet, V
Noël, V
Roché, M
Zrig, S
Carn, F
description We studied the dependence of solid deposit shape obtained by free drying of sessile drops on particle concentration and Derjaguin–Landau–Verwey–Overbeek (DLVO) particle/substrate interaction. In contrast to previous contributions using pH as a control parameter of interactions, we investigated an unprecedentedly wide range of concentrations and particle/substrate DLVO forces by modifying the nature of the substrate and particles as well as their size and surface chemistry, whereas long-distance repulsive interactions between particles were maintained for most of the drying time. Our main result is that the different shapes of deposits obtained by modifying the particle concentration are the same in the different regimes of concentration regardless of particle/substrate interaction in the studied range of DLVO forces and particle concentrations. The second result is that, contrary to expectations, the dominant morphology of dry patterns at low particle concentration always shows a dotlike pattern for all the studied systems.
doi_str_mv 10.1021/acs.langmuir.0c01546
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Chemical Sciences
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Materials
title Self-Assembly of Nanoparticles from Evaporating Sessile Droplets: Fresh Look into the Role of Particle/Substrate Interaction
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