Repo Dosen ULM

Physical and chemical mechanisms of hydrophobicity of nanoparticle membranes (Mg+Al2 O 3 )

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dc.contributor.author Wahyudi
dc.contributor.author Subagyo, Rachmat
dc.contributor.author Gapsari, Femiana
dc.date.accessioned 2023-04-10T00:23:02Z
dc.date.available 2023-04-10T00:23:02Z
dc.date.issued 2019-10
dc.identifier.uri https://repo-dosen.ulm.ac.id//handle/123456789/28109
dc.description.abstract Purpose: Investigate the hydrophobic, superhydrophobic and hydrophilic properties of Alumina (Al2 O 3 ) and Magnesium (Mg) nanoparticles. Design/methodology/approach: This research was conducted by SEM-EDX analysis of Magnesium and Alumina nanoparticles, observation of gas bubbles when droplets of water contact with membrane surfaces, measurement of surface roughness and detection of Hydrogen gas production using Gas Chromatography. There are eleven compositions (Al2 O 3 :Mg) membranes used in this study, namely: (0:100; 10:90; 20:80; 30:70; 40:60; 50:50; 60:40; 70:30; 80:20; 90:10; and 100:0). Findings: Successfully found an alloy membrane between Alumina (Al2 O 3 ) and Magnesium (Mg) nanoparticles in the composition of Mg:Al2 O 3 (0:100%) having Hydrophobic properties; Mg:Al2 O 3 (50:50%) has Superhydrophobic properties and Mg:Al2 O 3 (100:0%) has hydrophilic properties. Three conditions occur when H2 O droplets come in contact with the membrane layer, namely: hydrophobic conditions when the trapped gas pressure is smaller than the droplet pressure. Superhydrophobic conditions when the trapped gas pressure is equal to the droplet pressure. Hydrophilic conditions occur when the trapped gas pressure is greater than the droplet pressure. Research limitations/implications: This research is limited to the hydrophobic nature of Nano Alumina (Al2 O 3 ) and Magnesium (Mg) membrane particles. Practical implications: Superhydrophobic properties are very suitable to be applied to membranes that are useful for destiny. Originality/value: The novelty of this study is to find the right mixture of nanoparticles of Alumina and Magnesium in a composition that is capable of creating hydrophobic, superhydrophobic and hydrophilic properties. en_US
dc.language.iso en en_US
dc.publisher Journal of Achievement in Material and Manufacturing Engineering en_US
dc.relation.ispartofseries 96;2
dc.subject Hydrophobic, Superhydrophobic, Hydrophilic, SEM-EDX, Gas bubbles, Nanoparticles, Membranes en_US
dc.title Physical and chemical mechanisms of hydrophobicity of nanoparticle membranes (Mg+Al2 O 3 ) en_US
dc.type Article en_US


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