A liquid metal reaction environment for the room-temperature synthesis of atomically thin metal oxides.

Zavabeti, Ali; Ou, Jian Zhen; Carey, Benjamin J; Syed, Nitu; Orrell-Trigg, Rebecca; Mayes, Edwin L H; Xu, Chenglong; Kavehei, Omid et al. · Science · 2017

basic_science · Level V

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Abstract

Two-dimensional (2D) oxides have a wide variety of applications in electronics and other technologies. However, many oxides are not easy to synthesize as 2D materials through conventional methods. We used nontoxic eutectic gallium-based alloys as a reaction solvent and co-alloyed desired metals into the melt. On the basis of thermodynamic considerations, we predicted the composition of the self-limiting interfacial oxide. We isolated the surface oxide as a 2D layer, either on substrates or in suspension. This enabled us to produce extremely thin subnanometer layers of HfO<sub>2</sub>, Al<sub>2</sub>O<sub>3</sub>, and Gd<sub>2</sub>O<sub>3</sub> The liquid metal-based reaction route can be used to create 2D materials that were previously inaccessible with preexisting methods. The work introduces room-temperature liquid metals as a reaction environment for the synthesis of oxide nanomaterials with low dimensionality.