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Dispersibility of TiO<sub>2</sub> Nanoparticles in Less Polar Solvents: Role of Ligand Tail Structures

Tatsuya Sudo, Shohei Yamashita, Natsumi Koike, Hidehiro Kamiya, Yohei Okada

2022Chemistry - A European Journal10 citationsDOI

Abstract

Nanoparticles (NPs) are inherently prone to aggregation and loss of their size-derived properties, thus it is essential to enhance their dispersibility for applications. In less polar solvents, organic ligands containing oleyl groups are known as good dispersants due to their inefficient shell packing and inhibition of chain-chain crystallization as well as interdigitation between adjacent NPs. However, reagents with oleyl structures, such as oleic acid and oleylamine, can contain trans double bonds and saturated impurities, which might affect the chemical and/or physical properties of the NPs. Nevertheless, the effect of slight differences in surface ligand structure, including isomers, on the dispersibility of NPs has been little studied. We have synthesized five phosphonic acid ligands to investigate the structure-dispersibility relationship in detail. Dynamic light scattering and visible light transmittance revealed that not only regio- but also the stereochemistries of the C=C double bond in the ligand molecule, as well as the choice of solvent, are key factors in enhancing dispersibility.

Topics & Concepts

OleylamineLigand (biochemistry)ChemistryNanoparticleOleyl alcoholCrystallizationSolventMoleculeDynamic light scatteringDispersantOleic acidChemical engineeringOrganic chemistryMaterials scienceNanotechnologyDispersion (optics)BiochemistryEngineeringOpticsPhysicsReceptorNanomaterials for catalytic reactionsChemistry and Chemical EngineeringTiO2 Photocatalysis and Solar Cells
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