Wang et al., 2023 - Google Patents
Designing a slippery/superaerophobic hierarchical open channel for reliable and versatile underwater gas deliveryWang et al., 2023
- Document ID
- 8638432381596846123
- Author
- Wang X
- Bai H
- Li Z
- Tian Y
- Zhao T
- Cao M
- Publication year
- Publication venue
- Materials Horizons
External Links
Snippet
Achieving long-term and stable gas manipulation in an aqueous environment is necessary to improve multiphase systems relating to gas/liquid interaction. Inspired by the Pitcher plant and the hummingbird beak, we report a slippery/superaerophobic (SLSO) hierarchical fluid …
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Wang et al. | Designing a slippery/superaerophobic hierarchical open channel for reliable and versatile underwater gas delivery | |
Si et al. | Liquids unidirectional transport on dual-scale arrays | |
Bazhenov et al. | Gas-liquid hollow fiber membrane contactors for different applications | |
Mohammadifakhr et al. | Forward osmosis: A critical review | |
Zhao et al. | Improved interfacial floatability of superhydrophobic/superhydrophilic janus sheet inspired by lotus leaf | |
Xiao et al. | Bioinspired slippery cone for controllable manipulation of gas bubbles in low-surface-tension environment | |
Barambu et al. | Membrane surface patterning as a fouling mitigation strategy in liquid filtration: A review | |
Golovin et al. | Bioinspired surfaces for turbulent drag reduction | |
Wen et al. | Bioinspired super‐wettability from fundamental research to practical applications | |
Sinha Ray et al. | Review on blueprint of designing anti-wetting polymeric membrane surfaces for enhanced membrane distillation performance | |
Li et al. | Fabrication of polydimethysiloxane (PDMS) dense layer on polyetherimide (PEI) hollow fiber support for the efficient CO2/N2 separation membranes | |
Sharma et al. | Porous hydrophobic–hydrophilic composite hollow fiber and flat membranes prepared by plasma polymerization for direct contact membrane distillation | |
Cheng et al. | Applications of textured surfaces on bubble trapping and degassing for microfluidic devices | |
Liang et al. | Novel flow field with superhydrophobic gas channels prepared by one-step solvent-induced crystallization for micro direct methanol fuel cell | |
Shang et al. | Concentration polarization on surface patterned membranes | |
Song et al. | Droplet spreading characteristics on ultra-slippery solid hydrophilic surfaces with ultra-low contact angle hysteresis | |
Wang et al. | Pressure-driven phase separation based on modified porous mesh for liquid management in microgravity | |
Jafari Gukeh et al. | Lateral spreading of gas bubbles on submerged wettability-confined tracks | |
Sahebi et al. | Developing a thin film composite membrane with hydrophilic sulfonated substrate on nonwoven backing fabric support for forward osmosis | |
Wang et al. | Effect of polyethylene glycol additive on the structure and performance of fabric-reinforced thin film composite | |
Osman et al. | Carbon dioxide bubbles removal by capillary actuation in the anode channel of direct methanol fuel cells | |
Lu et al. | Cilia‐Inspired Functional Channels for High‐Speed and Directional PEMFC Drainage | |
Zhang et al. | Pyramid-shaped superhydrophobic surfaces for underwater drag reduction | |
Lin et al. | Improved hydrodynamic properties and enhanced resistance to particle deposition and membrane fouling by millimeter-scale patterned membranes | |
Mirfendereski et al. | Experimental investigation of the influence of nanofluids on the wetting of membrane contactors in the CO2 capture process |