In exsolution, nanoparticles form by emerging from oxide hosts by application of redox driving forces, leading to transformative advances in stability, activity, and efficiency over deposition techniques, and resulting in a wide range of new opportunities for catalytic, energy and net-zero-related technologies. However, the mechanism of exsolved nanoparticle nucleation and perovskite structural evolution, has, to date, remained unclear. Herein, we shed light on this elusive process by following in real time Ir nanoparticle emergence from a SrTiO3 host oxide lattice, using in situ high-resolution electron microscopy in combination with computational simulations and machine learning analytics. We show that nucleation occurs via atom clusterin...
Photocatalysis as an efficient and green solution to produce highly efficient and renewable energy H...
Crystal facet regulation is an effective method for preparing SrTiO3 or other perovskite semiconduct...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...
In exsolution, nanoparticles form by emerging from oxide hosts by application of redox driving force...
The search for new functional materials that combine high stability and efficiency with reasonable c...
Exsolution of excess transition metal cations from a non-stoichiometric perovskite oxide has sparked...
Metal nanoparticles prepared by exsolution at the surface of perovskite oxides have been recently sh...
SrTiO3 nanoislands on SrTiO3 (001) in a diffusion-limited growth regime were studied using in situ s...
Particles dispersed on the surface of oxide supports have enabled a wealth of applications in electr...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
In the former research, we produced the regular polyhedron single-crystalline SrTiO3 particles with ...
The nucleation of SrTiO3 three-dimensional (3D) islands and nanorings on Si substrates via a novel m...
Photocatalysis as an efficient and green solution to produce highly efficient and renewable energy H...
Crystal facet regulation is an effective method for preparing SrTiO3 or other perovskite semiconduct...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...
In exsolution, nanoparticles form by emerging from oxide hosts by application of redox driving force...
The search for new functional materials that combine high stability and efficiency with reasonable c...
Exsolution of excess transition metal cations from a non-stoichiometric perovskite oxide has sparked...
Metal nanoparticles prepared by exsolution at the surface of perovskite oxides have been recently sh...
SrTiO3 nanoislands on SrTiO3 (001) in a diffusion-limited growth regime were studied using in situ s...
Particles dispersed on the surface of oxide supports have enabled a wealth of applications in electr...
Perovskite oxide surfaces catalyze oxygen exchange reactions that are crucial for fuel cells, electr...
In the former research, we produced the regular polyhedron single-crystalline SrTiO3 particles with ...
The nucleation of SrTiO3 three-dimensional (3D) islands and nanorings on Si substrates via a novel m...
Photocatalysis as an efficient and green solution to produce highly efficient and renewable energy H...
Crystal facet regulation is an effective method for preparing SrTiO3 or other perovskite semiconduct...
An often-overlooked property of transition metal oxide thin films is their microscopic surface struc...