Room-temperature liquid metals such as GaInSn or EGaIn present the most attractive properties for soft and highly stretchable electronics. Recently, several methods have been investigated to functionalize the surface of the liquid metal via coatings and encapsulation. However, most can hardly be extended to other samples than droplets. In this study, we focus on the tunability of the process of galvanic replacement of Ga alloys with gold to form thin-film encapsulation. We characterized in-depth the obtainable composition and structure of a noble metal shell formed on the liquid metal via scanning electron microscopy, energy-dispersive X-ray, and topographic laser microscopy and highlighted the change in mechanism of galvanic replacement in...
In this study we compare the electrochemical and structural properties of three gold salts AuCl, AuC...
Gallium-based liquid metals are of interest for a variety of applications including flexible electro...
The galvanic replacement reaction is a verstile method for the fabrication of bimetallic nanomateria...
Room-temperature liquid metals such as GaInSn or EGaIn present the most attractive properties for so...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Several gallium-based liquid metal alloys are liquid at room temperature. As 'liquid', suc...
Gallium-based liquid metal alloys have garnered attention for their use in self-healing and flexible...
Gallium-based liquid metals form alloys with a melting point close to or below room temperature. On ...
Room temperature liquid metals have been widely studied because of their unique properties including...
Gallium based eutectic alloys are one of the promising substitutes for mercury. These alloys are non...
Room temperature liquid metals based on gallium demonstrate interesting physical and chemical proper...
Herein, we report galvanic displacement of metal nanoparticles and films onto single-crystalline GaA...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Gallium oxyhydroxide (GaOOH) is a wide band gap semiconductor of interest for a variety of applicati...
Metal melt extrusion in gaseous or vacuum environments is a classical approach for forming wires. Ho...
In this study we compare the electrochemical and structural properties of three gold salts AuCl, AuC...
Gallium-based liquid metals are of interest for a variety of applications including flexible electro...
The galvanic replacement reaction is a verstile method for the fabrication of bimetallic nanomateria...
Room-temperature liquid metals such as GaInSn or EGaIn present the most attractive properties for so...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Several gallium-based liquid metal alloys are liquid at room temperature. As 'liquid', suc...
Gallium-based liquid metal alloys have garnered attention for their use in self-healing and flexible...
Gallium-based liquid metals form alloys with a melting point close to or below room temperature. On ...
Room temperature liquid metals have been widely studied because of their unique properties including...
Gallium based eutectic alloys are one of the promising substitutes for mercury. These alloys are non...
Room temperature liquid metals based on gallium demonstrate interesting physical and chemical proper...
Herein, we report galvanic displacement of metal nanoparticles and films onto single-crystalline GaA...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Gallium oxyhydroxide (GaOOH) is a wide band gap semiconductor of interest for a variety of applicati...
Metal melt extrusion in gaseous or vacuum environments is a classical approach for forming wires. Ho...
In this study we compare the electrochemical and structural properties of three gold salts AuCl, AuC...
Gallium-based liquid metals are of interest for a variety of applications including flexible electro...
The galvanic replacement reaction is a verstile method for the fabrication of bimetallic nanomateria...