Correlating In Situ Growth Kinetics with Nanorod Morphology Using iSCAT-FlucCS

Abstract Anisotropic growth in seed-mediated nanocrystal synthesis depends on nucleation and autocatalytic growth, and the aspect ratio is expected to be related to the ratio of growth to nucleation rates. Direct kinetic evidence for this link is limited, because it is difficult to measure both kinetics and morphology in the same experiment. In this work, we examined the growth kinetics of seed-mediated silver nanorods and linked them to their shapes using a dual-mode platform, iSCAT-FlucCS. We measured nucleation (k1) and growth (k2) kinetic parameters in situ with wide-field iSCAT microscopy and compared them to nanorod dimensions obtained from iSCAT fluctuation correlation spectroscopy. We found that k2 increased with seed concentration, and k1 shows no clear monotonic dependence on seed volume, modestly high at low seed levels. The nanorod aspect ratio decreased as k2/k1 rose above a certain point, suggesting a shift from seed-limited to monomer-limited growth, with more variability below this threshold. These findings provide direct kinetic evidence that competition between nucleation and growth shapes seed-dependent nanorod anisotropy.

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Publication Details

Journal
The Journal of Physical Chemistry Letters
Published
2026-10-03
DOI
https://doi.org/10.1021/acs.jpclett.6c02895
Primary Topic
Gold and Silver Nanoparticles Synthesis and Applications
Type
article
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article

Correlating In Situ Growth Kinetics with Nanorod Morphology Using iSCAT-FlucCS

Sachin Dev Verma, Ruchir Gupta, Shubham Mulay
The Journal of Physical Chemistry Letters
Gold and Silver Nanoparticles Synthesis and Applications
article

Correlating In Situ Growth Kinetics with Nanorod Morphology Using iSCAT-FlucCS

Sachin Dev Verma, Ruchir Gupta, Shubham Mulay
article en

Abstract

Abstract Anisotropic growth in seed-mediated nanocrystal synthesis depends on nucleation and autocatalytic growth, and the aspect ratio is expected to be related to the ratio of growth to nucleation rates. Direct kinetic evidence for this link is limited, because it is difficult to measure both kinetics and morphology in the same experiment. In this work, we examined the growth kinetics of seed-mediated silver nanorods and linked them to their shapes using a dual-mode platform, iSCAT-FlucCS. We measured nucleation (k1) and growth (k2) kinetic parameters in situ with wide-field iSCAT microscopy and compared them to nanorod dimensions obtained from iSCAT fluctuation correlation spectroscopy. We found that k2 increased with seed concentration, and k1 shows no clear monotonic dependence on seed volume, modestly high at low seed levels. The nanorod aspect ratio decreased as k2/k1 rose above a certain point, suggesting a shift from seed-limited to monomer-limited growth, with more variability below this threshold. These findings provide direct kinetic evidence that competition between nucleation and growth shapes seed-dependent nanorod anisotropy.

The Journal of Physical Chemistry Letters
Indian Institute of Science Education and Research, Bhopal (IN)
Openalex Percentile: Top 30%
Gold and Silver Nanoparticles Synthesis and Applications
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