Enthalpy and entropy of nanoparticle association fron tenperature-dependent cryo-TEM

Publication date

2011

Authors

Rijssel, J.ISNI 0000000419566880
Erné, B.H.ISNI 0000000397074702
Meeldijk, Johannes DISNI 0000000419468594
Casavola, M.ISNI 0000000390743889
Vanmaekelbergh, D.A.M.ISNI 0000000394482321
Meijerink, A.ISNI 000000039216731X
Philipse, A.P.ISNI 000000038745113X

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Abstract

Quantum dots form equilibrium structures in liquid dispersions, due to thermodynamic forces that are often hard to quantify. Analysis of these structures, visualized using cryogenic electron microscopy, yields their formation free energy. Here we show that the nanoparticle interaction free energy can be further separated into the enthalpic and entropic contributions, using the temperature dependence of the assembled structures. Monodisperse oleic acid-capped PbSe nanoparticles dispersed in decalin were used as a model system, and the temperature-dependent equilibrium structures were imaged by cryo-TEM, after quenching from different initial temperatures. The interaction enthalpy and entropy follow from van ’t Hoff’s exact equation for the temperature dependence of thermodynamic equilibria, now applied to associating nanoparticles. The enthalpic component gives the magnitude of the contact interaction, which is crucial information in understanding the energetics of the self-assembly of nanoparticles into ordered structures.

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International (English)

Citation

van Rijssel, J, Erné, B H, Meeldijk, J D, Casavola, M, Vanmaekelbergh, D A M, Meijerink, A & Philipse, A P 2011, 'Enthalpy and entropy of nanoparticle association fron tenperature-dependent cryo-TEM', Physical Chemistry Chemical Physics, vol. 13, no. 28, pp. 12770-12774. https://doi.org/10.1039/c1cp20297a