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Main Authors: Saito, Shunichi, Kim, Sooyeon, Taniguchi, Yuichi, Yanagisawa, Miho
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2505.08475
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author Saito, Shunichi
Kim, Sooyeon
Taniguchi, Yuichi
Yanagisawa, Miho
author_facet Saito, Shunichi
Kim, Sooyeon
Taniguchi, Yuichi
Yanagisawa, Miho
contents Colloidal gels gradually evolve as their structures reorganize, a process known as aging. Understanding this behavior is essential for fundamental science and practical applications such as drug delivery and tissue engineering. This study examines the aging of low-concentration Laponite suspensions with varying salt concentrations using fluorescence microscopy, scattering imaging, and particle tracking microrheology. Structural heterogeneity appeared earlier at higher salt concentrations, and the average size of aggregates decreased as the salt concentration increased further. Fourier transform analysis corroborated these trends, and scattering images showed similar results. Microrheology revealed distinct dynamics in Laponite-rich and Laponite-poor regions: the poor phase exhibited liquid-like behavior, while the rich phase exhibited gel-like properties. Further analysis suggested the presence of submicron or nanoscale structural heterogeneities within the rich phase. These findings provide insight into how aging and salt concentration shape the structure and dynamics of colloidal gels.
format Preprint
id arxiv_https___arxiv_org_abs_2505_08475
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Real-space observation of salt-dependent aging in Laponite gels
Saito, Shunichi
Kim, Sooyeon
Taniguchi, Yuichi
Yanagisawa, Miho
Soft Condensed Matter
Colloidal gels gradually evolve as their structures reorganize, a process known as aging. Understanding this behavior is essential for fundamental science and practical applications such as drug delivery and tissue engineering. This study examines the aging of low-concentration Laponite suspensions with varying salt concentrations using fluorescence microscopy, scattering imaging, and particle tracking microrheology. Structural heterogeneity appeared earlier at higher salt concentrations, and the average size of aggregates decreased as the salt concentration increased further. Fourier transform analysis corroborated these trends, and scattering images showed similar results. Microrheology revealed distinct dynamics in Laponite-rich and Laponite-poor regions: the poor phase exhibited liquid-like behavior, while the rich phase exhibited gel-like properties. Further analysis suggested the presence of submicron or nanoscale structural heterogeneities within the rich phase. These findings provide insight into how aging and salt concentration shape the structure and dynamics of colloidal gels.
title Real-space observation of salt-dependent aging in Laponite gels
topic Soft Condensed Matter
url https://arxiv.org/abs/2505.08475