Issue 13, 2023

On-nanoparticle monolayers as a solute-specific, solvent-like phase

Abstract

In addition to modifying surface properties, self-assembled monolayers, SAMs, on nanoparticles can selectively incorporate small molecules from the surrounding solution. This selectivity has been used in the design of substrate-specific catalytic systems but its degree has not been quantified. This work uses catalytic centers embedded in on-nanoparticle hydrophobic SAMs to monitor and quantify the partitioning of molecules between the bulk solvent and these monolayers. A combination of experiments and theory allows us to relate the logarithm of the incorporation-into-SAM constant to the “bulk” log P values, characterizing the incoming substrates. These results are in line with classic, semi-empirical linear free energy relationships between partitioning solvent systems; in this way, they substantiate the view of nanoscopic on-particle SAMs acting akin to a bulk solvent phase.

Graphical abstract: On-nanoparticle monolayers as a solute-specific, solvent-like phase

Supplementary files

Article information

Article type
Paper
Submitted
12 Nov 2022
Accepted
31 Jan 2023
First published
04 Feb 2023

Nanoscale, 2023,15, 6379-6386

On-nanoparticle monolayers as a solute-specific, solvent-like phase

J. C. Ahumada, G. Ahumada, Y. Sobolev, M. Kim and B. A. Grzybowski, Nanoscale, 2023, 15, 6379 DOI: 10.1039/D2NR06341G

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