
When gold nanoparticles are coated with binary mixtures of dislike ligand molecules, separation in the ligand shell occurs; if the particles are smaller than a threshold size the separation is solely enthalpy driven leading to the spontaneous formation of Janus particles.
Spheres, Magnetic Resonance Spectroscopy, janus gold nanoparticles, Ligand Shell, Surface Properties, Metal Nanoparticles, Patchy Particles, Monolayer-Protected Nanoparticles, Ligands, Clusters, Microscopy, Electron, Transmission, Microscopy, Scanning Tunneling, Terphenyl Compounds, ligand morphology, Nanotechnology, Sulfhydryl Compounds, Dimers, patchy particles, One-Phase, Surfaces, Anisotropy, Thermodynamics, Gold, phase separation, Dimerization
Spheres, Magnetic Resonance Spectroscopy, janus gold nanoparticles, Ligand Shell, Surface Properties, Metal Nanoparticles, Patchy Particles, Monolayer-Protected Nanoparticles, Ligands, Clusters, Microscopy, Electron, Transmission, Microscopy, Scanning Tunneling, Terphenyl Compounds, ligand morphology, Nanotechnology, Sulfhydryl Compounds, Dimers, patchy particles, One-Phase, Surfaces, Anisotropy, Thermodynamics, Gold, phase separation, Dimerization
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