Polydopamine Shell as a Ga<sup>3+</sup> Reservoir for Triggering Gallium-Indium Phase Separation in Eutectic Gallium-Indium Nanoalloys.

Xie, Wanjie; Allioux, Francois-Marie; Namivandi-Zangeneh, Rashin; Ghasemian, Mohammad B; Han, Jialuo; Rahim, Md Arifur; Tang, Jianbo; Yang, Jiong et al. · ACS Nano · 2021

basic_science · Level V

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Abstract

Low melting point eutectic systems, such as the eutectic gallium-indium (EGaIn) alloy, offer great potential in the domain of nanometallurgy; however, many of their interfacial behaviors remain to be explored. Here, a compositional change of EGaIn nanoalloys triggered by polydopamine (PDA) coating is demonstrated. Incorporating PDA on the surface of EGaIn nanoalloys renders core-shell nanostructures that accompany Ga-In phase separation within the nanoalloys. The PDA shell keeps depleting the Ga<sup>3+</sup> from the EGaIn nanoalloys when the synthesis proceeds, leading to a Ga<sup>3+</sup>-coordinated PDA coating and a smaller nanoalloy. During this process, the eutectic nanoalloys turn into non-eutectic systems that ultimately result in the solidification of In when Ga is fully depleted. The reaction of Ga<sup>3+</sup>-coordinated PDA-coated nanoalloys with nitrogen dioxide gas is presented as an example for demonstrating the functionality of such hybrid composites. The concept of phase-separating systems, with polymeric reservoirs, may lead to tailored materials and can be explored on a variety of post-transition metals.