Results 211 to 220 of about 23,171 (237)
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pH-temperature coupled regulation for promoted nanofluidic osmotic energy conversion
DesalinationQu Zhiguo
exaly +2 more sources
Anti‐Swelling 3D Nanohydrogel for Efficient Osmotic Energy Conversion
Advanced Functional MaterialsAbstractOsmotic energy conversion based on reverse electrodialysis (RED) technology has attracted intense attention. As the key component, the ion‐selective membranes should meet the basic requirements of high power density, high mechanical strength, and easy preparation.
Cuncai Lin +8 more
openaire +1 more source
ACS Applied Materials & Interfaces
Osmotic energy, which is harnessed through the selective transportation, represents a carbon-neutral and highly scalable power generation mechanism with significant potential for global energy systems. Nanochannel membranes, as a crucial interface for converting osmotic energy, are constructed from a diverse array of emerging building blocks.
Yuruo Qiu +5 more
openaire +2 more sources
Osmotic energy, which is harnessed through the selective transportation, represents a carbon-neutral and highly scalable power generation mechanism with significant potential for global energy systems. Nanochannel membranes, as a crucial interface for converting osmotic energy, are constructed from a diverse array of emerging building blocks.
Yuruo Qiu +5 more
openaire +2 more sources
Ultrathin H‐MXM as An “Ion Freeway” for High‐Performance Osmotic Energy Conversion
Small MethodsAbstractNanofluidic membranes are currently being explored as potential candidates for osmotic energy harvesting. However, the development of high‐performance nanofluidic membranes remains a challenge. In this study, the ultrathin MXene membrane (H‐MXM) is prepared by ultrathin slicing and realize the ion horizontal transportation.
Qizheng Dong +5 more
openaire +2 more sources
Nanoparticle enhanced salinity-gradient osmotic energy conversion under photothermal effect
Energy Conversion and Management, 2022Qinlong Ren, J F Zhang, Z G Qu
exaly
Measures for Mitigating Ionic Concentration Polarization During Osmotic Energy Conversion
SmallABSTRACT The recovery of osmotic energy through nanochannel membrane materials offers advantages such as zero CO 2 emissions and high resistance to weather and other external factors.
Boyou Wang +6 more
openaire +1 more source

