Vertically Aligned Graphene Sheets Membrane for Highly Efficient Solar Thermal Generation of Clean Water.
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Summary
The long-range vertically aligned graphene sheets membrane (VA-GSM) was prepared as the highly efficient solar thermal converter for generation of clean water by the antifreeze-assisted freezing technique, which possessed the run-through channels facilitating the water transport, high light absorption capacity for excellent photothermal transduction, and the extraordinary stability in rigorous conditions.
- Type
- article
- Published
- 2017-04-28
- Cited by
- 950
- References
- 50
- OpenAlex
- https://openalex.org/W2605487562
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22437533
Keywords
Materials science, Graphene, Renewable energy, Seawater, Solar energy
References
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- Polydopamine-filled bacterial nanocellulose as a biodegradable interfacial photothermal evaporator for highly efficient solar steam generation
- Fiber-Based, Double-Sided, Reduced Graphene Oxide Films for Efficient Solar Vapor Generation.
- Synergistically assembled MWCNT/graphene foam with highly efficient microwave absorption in both C and X bands
- Graphene oxide-based evaporator with one-dimensional water transport enabling high-efficiency solar desalination
- Synthetic Graphene Oxide Leaf for Solar Desalination with Zero Liquid Discharge.
- Solar water evaporation by black photothermal sheets
- A strong and compressible three dimensional graphene/polyurushiol composite for efficient water cleanup
- Design of 3D Graphene-Oxide Spheres and Their Derived Hierarchical Porous Structures for High Performance Supercapacitors.
- Ultra-fast vapor generation by a graphene nano-ratchet: a theoretical and simulation study.
- Photothermal nanocomposite membranes for direct solar membrane distillation
- Modifying the electrochemical performance of vertically-oriented few-layered graphene through rotary plasma processing
- An Ultrathin Flexible 2D Membrane Based on Single‐Walled Nanotube–MoS2 Hybrid Film for High‐Performance Solar Steam Generation
- Biomass-derived N-doped porous carbon as electrode materials for Zn-air battery powered capacitive deionization
- Hierarchical hole-enhanced 3D graphene assembly for highly efficient capacitive deionization
- Sulfur-Doped Laser-Induced Porous Graphene Derived from Polysulfone-Class Polymers and Membranes.
- High‐Performance Solar Steam Device with Layered Channels: Artificial Tree with a Reversed Design
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