Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars
Por um escritor misterioso
Last updated 03 julho 2024
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://cloudfront.jove.com/files/ftp_upload/60403/60403fig5a.jpg)
Scientific Article | Este trabalho apresenta protocolos de microfabricação para alcançar cavidades e pilares com perfis reentrantes e duplamente reentrantes
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://pubs.acs.org/cms/10.1021/acs.langmuir.0c02768/asset/images/medium/la0c02768_0012.gif)
Open Problems in Wetting Phenomena: Pinning Retention Forces
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://0.academia-photos.com/attachment_thumbnails/68898430/mini_magick20210827-8398-ois2f8.png?1630056846)
PDF) Proof-of-Concept for Gas-Entrapping Membranes Derived from Water-Loving SiO2/Si/SiO2 Wafers for Green Desalination
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://www.researchgate.net/publication/339618683/figure/fig5/AS:864624232648707@1583153889672/Air-water-interfaces-A-Computer-enhanced-3D-reconstructions-of-the-air-water-interface.jpg)
Air-water interfaces. (A) Computer-enhanced 3D reconstructions of the
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://europepmc.org/articles/PMC7221082/bin/41598_2020_64345_Fig8_HTML.jpg)
Biomimetic Coating-free Superomniphobicity. - Abstract - Europe PMC
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://www.researchgate.net/publication/269157245/figure/fig3/AS:904322925735938@1592618795432/Steiners-Roman-surface-11-with-a-plot-depth-9-and-b-plot-depth-10-showing-how.png)
Steiner's Roman surface (11) with (a) plot depth = 9 and (b) plot depth
One-Step Fabrication of Flexible Bioinspired Superomniphobic Surfaces
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://www.researchgate.net/profile/Sankara-Narayana-Moorthi-Arunachalam/publication/367386900/figure/fig1/AS:11431281187018495@1694103048391/Schematics-of-microstructures-A-B-Reentrant-cavities-C-D-doubly-reentrant-cavities_Q320.jpg)
PDF) Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://i1.rgstatic.net/publication/339618683_Proof-of-Concept_for_Gas-Entrapping_Membranes_Derived_from_Water-Loving_SiO2SiSiO2_Wafers_for_Green_Desalination/links/5e76f1a792851cf2719da8ca/largepreview.png)
PDF) Proof-of-Concept for Gas-Entrapping Membranes Derived from Water-Loving SiO2/Si/SiO2 Wafers for Green Desalination
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://pubs.acs.org/cms/10.1021/acsami.2c12483/asset/images/large/am2c12483_0006.jpeg)
One-Step Fabrication of Flexible Bioinspired Superomniphobic Surfaces
Sankara Narayana Moorthi Arunachalam - Doctoral Researcher - KAUST
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://ars.els-cdn.com/content/image/1-s2.0-S0376738820307183-gr1.jpg)
A molecular to macro level assessment of direct contact membrane distillation for separating organics from water - ScienceDirect
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://app.jove.com/files/ftp_upload/60403/60403video1.jpg)
Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://patentimages.storage.googleapis.com/c9/8f/8b/745b3d9dce1cee/pat00003.png)
KR20150137823A - Method for anisotropically etching silicon wafer and apparatus therefor - Google Patents
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://www.researchgate.net/publication/325074949/figure/fig1/AS:1029756321546244@1622524447904/Artistic-silhouette-rendering-pipeline.png)
Artistic silhouette rendering pipeline.
![Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars](https://www.science.org/cms/10.1126/sciadv.aax6192/asset/1a8fe616-cb77-4cc9-a58f-8cc3c71724f3/assets/graphic/aax6192-f4.jpeg)
Mitigating cavitation erosion using biomimetic gas-entrapping microtextured surfaces (GEMS)
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