Energetics of biomolecular shells in core–shell nanocomplexes

K Kristina Lilova (Center for Materials of the Universe, Arizona State University) T Tamilarasan Subramani (Center for Materials of the Universe, Arizona State University) I Isabella Montini (Center for Materials of the Universe, Arizona State University) A Anne Harrison (Center for Materials of the Universe, Arizona State University) M Manuel Scharrer (Center for Materials of the Universe, Arizona State University) H Hongwu Xu (Navrotsky-Eyring Center for Materials of the Universe, School of Molecular Sciences, Arizona State University) A Alexandra Navrotsky (Navrotsky-Eyring Center for Materials of the Universe, School of Molecular Sciences, Arizona State University)

Abstract

In this work, the stabilization enthalpy of patchy core–shell nanocomplexes is used to assess their thermodynamic stability. It is defined as the enthalpy of formation of a hydrated core–shell complex from hydrated (uncoated) core and hydrated shell species. Instead of the macroscopic bulk phase, the reference state is taken as the hydrated (uncoated) core of the nanocomplex with the same crystallite size. The stabilization enthalpies of three patchy magnetite (Fe 3 O 4 ) nanoparticles coated with three model biomolecules, bovine serum albumin, potato starch, and lauric acid were determined experimentally and the contributions of the primary hydration enthalpy and the adsorption of the biomolecules on the magnetite surface are measured and discussed. The findings establish the stabilization enthalpy as a quantitative basis to describe nanoparticle stability and interactions in biological and other complex media, which are crucial for biomedical applications.

Article Details

Volume / Issue Vol. 123, Issue 15
Published April 14, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

K

Kristina Lilova

Center for Materials of the Universe, Arizona State University

T

Tamilarasan Subramani

Center for Materials of the Universe, Arizona State University

I

Isabella Montini

Center for Materials of the Universe, Arizona State University

A

Anne Harrison

Center for Materials of the Universe, Arizona State University

M

Manuel Scharrer

Center for Materials of the Universe, Arizona State University

H

Hongwu Xu

Navrotsky-Eyring Center for Materials of the Universe, School of Molecular Sciences, Arizona State University

A

Alexandra Navrotsky

Navrotsky-Eyring Center for Materials of the Universe, School of Molecular Sciences, Arizona State University