2020
DOI: 10.1002/pen.25412
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Development of hierarchical surface roughness on porous poly (vinylidene fluoride) membrane for membrane distillation process

Abstract: The surface hydrophobicity of a poly (vinylidene fluoride) membrane was increased through the phase separation of polycarbonate (PC) solution on the membrane surface. A variety of characterization techniques including surface contact angle measurement, scanning electron microscopy, liquid entry pressure measurement, atomic force microscopy, porosity measurement, pore size measurement, and attenuated total reflectance‐Fourier transform infrared spectroscopy were performed to investigate the membrane surface mod… Show more

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Cited by 13 publications
(10 citation statements)
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“…The porous material possesses high specific surface area inside, which can produce abundance of adsorption sites. [ 30–35 ] This structural feature is beneficial to improve the efficiency of ice purification. Obviously, the morphology of the internal pores has an influence on the purification efficiency.…”
Section: Introductionmentioning
confidence: 99%
“…The porous material possesses high specific surface area inside, which can produce abundance of adsorption sites. [ 30–35 ] This structural feature is beneficial to improve the efficiency of ice purification. Obviously, the morphology of the internal pores has an influence on the purification efficiency.…”
Section: Introductionmentioning
confidence: 99%
“…Furthermore, the peak value of the C F 2 symmetry mode for F-SiO 2 is 1209 cm À1 . 33 The additional peaks at 651, 707, and 952 cm À1 can be attributed to the stretching vibration of the C F bond in the form of CF, CF 2 , or CF 3 . 34 The XPS spectra demonstrate that strong F 1s peaks and F Auger peaks are detected at 689 and 833 eV, 35 as shown in Figure 5A.…”
Section: Preparation Principle and Characterizationsmentioning
confidence: 99%
“…Phase separation is shown to be a cost-effective and easy method of increasing surface roughness without using low surface energy modifiers to improve the hydrophobicity of the membrane. Rabiei et al [91] have successfully enhanced the membrane surface's hydrophobicity through the phase separation of the PC solution on the PVDF membrane. Figure 3 present the SEM images of the membranes coated with different concentrations of the PC solution.…”
Section: Modifications On Membrane Structuresmentioning
confidence: 99%