SELF-ORGANIZED AND SELF-PROPELLED AERO-GaN WITH DUAL HYDROPHILIC-HYDROPHOBIC BEHAVIOR

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dc.contributor.author Raevschi, Simion
dc.contributor.author Tiginyanu, Ion
dc.contributor.author Braniste, Tudor
dc.contributor.author Smazna, Daria
dc.contributor.author Deng, Mao
dc.contributor.author Schütt, Fabian
dc.date.accessioned 2021-12-02T09:59:13Z
dc.date.available 2021-12-02T09:59:13Z
dc.date.issued 2019
dc.identifier.citation RAEVSCHI, S., TIGYNEANU, I. et al. Self-organized and self-propelled aero-GaN with dual hydrophilic-hydrophobic behavior. In: Nano Energy. 2019, 56, pp. 759-769. ISSN 2211-2855. en
dc.identifier.issn 2211-2855
dc.identifier.uri https://www.sciencedirect.com/science/article/pii/S2211285518308620
dc.identifier.uri http://dspace.usm.md:8080/xmlui/handle/123456789/5078
dc.description.abstract Nature utilizes hydrophilic-hydrophobic biomolecular entities to perform self-organized structural and functional tasks, including the formation of cellular compartments and motion, separation of chemicals or self-healing properties in a highly energy efficient manner. So far, no inorganic artificial micro/nanostructure units are known that self-organize and mimic such functions just by adding liquid. Here we develop the first nanomaterial exhibiting hydrophobic wetting and hydrophilic dewetting. Consisting of gallium nitride nanoscopically thin membranes shaped as hollow microtetrapods, which we term aerogalnite (AGaN), the nanomaterial is extremely porous, mechanically flexible, stretchable, and exhibits hydrophilicity under tension and hydrophobicity when compressed against water. Self-assembling the AGaN tetrapods on water enabled us to develop self-healing waterproof rafts carrying liquid droplets 500-times as heavy as rafts, and to demonstrate self-propelled liquid marbles exhibiting velocity of rotation as high as 750 rot/min. The specific force of the detachment of AGaN from the water surface was experimentally determined equal to 35 mN/cm2. The new developed material aerogalnite and its peculiar characteristics are promising for applications in sensorics, microfluidic devices and microrobotics. en
dc.language.iso en en
dc.publisher Elsevier en
dc.subject gallium nitride en
dc.subject hollow tetrapods en
dc.subject 3D network en
dc.subject hydrophobic wetting en
dc.subject self-assembling tetrapods on water en
dc.title SELF-ORGANIZED AND SELF-PROPELLED AERO-GaN WITH DUAL HYDROPHILIC-HYDROPHOBIC BEHAVIOR en
dc.type Article en


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