2020
DOI: 10.1016/j.ces.2020.115650
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Metal organic framework-integrated chitosan/poly(vinyl alcohol) (PVA) nanofibrous membrane hybrids from green process for selective CO2 capture and filtration

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Cited by 47 publications
(21 citation statements)
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“…Also, Jiamjirangkul et al (2020) have studies on gas sorption suggested that the immersion of chitosan nanofibres in Cu-BTC (copper benzene-1,3,5-tricarboxylate) metal-organic frameworks. The chitosan nanofibres on (copper benzene-1,3,5-tricarboxylate) metal-organic frameworks presented great specific surface area ( 104.6 m 2 ∕g ), with uptake potential of CO 2 ∕N 2 above 14 times possesses an exceptional potential for uptake and filtration of CO 2 .…”
Section: Membranes Separationmentioning
confidence: 99%
“…Also, Jiamjirangkul et al (2020) have studies on gas sorption suggested that the immersion of chitosan nanofibres in Cu-BTC (copper benzene-1,3,5-tricarboxylate) metal-organic frameworks. The chitosan nanofibres on (copper benzene-1,3,5-tricarboxylate) metal-organic frameworks presented great specific surface area ( 104.6 m 2 ∕g ), with uptake potential of CO 2 ∕N 2 above 14 times possesses an exceptional potential for uptake and filtration of CO 2 .…”
Section: Membranes Separationmentioning
confidence: 99%
“…Metal‐organic frameworks (MOFs) have also been used in the functionalization of nanofibers by the LbL method. [ 171 ] For example, Jiamjirangkul and colleagues [ 172 ] used different approaches for the preparation of functionalized chitosan/PVA nanofibers (CNFs) with the MOF copper‐1,2,5‐benzenetricarboxylic‐acid (Cu‐BTC). The three approaches were: i) direct mixing of Cu‐BTC MOF with the polymeric solution and electrospinning; ii) in situ formation of Cu‐BTC MOF in CNFs; and iii) deposition of Cu‐BTC MOF on the surface of CNFs by the LbL method.…”
Section: Post‐modification Methods For Micro/nanofibermentioning
confidence: 99%
“…Furthermore, variations in (iii) deposition of Cu‐BTC precursors were also investigated, with the possibility of tailoring the morphology of CNFs according to the order of deposition of Cu‐BTC precursors, which presented a potential for gas separation and filtration. [ 172 ] Other studies reported the post‐functionalization of nanofibers by the LbL method with polyoxometalates (POMs), [ 173 ] GO, [ 174 ] MoS 2 nanosheets, [ 175 ] and transition metal carbides and carbonitrides (MXenes) [ 176 ] aiming at applications in catalysis, optical sensors, energy storage systems, and supercapacitors.…”
Section: Post‐modification Methods For Micro/nanofibermentioning
confidence: 99%
“…Furthermore, the resistance changes in the MOF-PAN hybrid fiber could sense the fast and slow breathing indicating the condition of the patient [ 73 ] Cu- 1,3,5-benzenetricarboxylic acid (BTC) MOF-based chitosan (CNF)/poly (vinyl alcohol) (PVA) electrospun nanofiber for selective CO 2 capture CNFs/BTC/Cu-3 which showed wider pore range of 0.7 to 1.1 nm. The CNF/Cu/BTC-3 also showed preferential adsorption of CO 2 to be 14 times more than N 2 at 298 K and 100 kPa [ 74 ] Antimicrobial fibers Silver nanoparticles (AgNPs) containing PVA nanofiber membranes were electrospun and grafted with 3,3′,4,4′-benzophenone tetracarboxylic acid (BPTA) which generate reactive oxygen species (OH and H 2 O 2 ) to impart antibacterial properties Tight-fitting masks with small fans performed better than masks without fans [ 75 ] AgNP containing PVDF nanofiber were electrospun for multifunctional applications by incorporating alumina Al 2 O 3 nanoparticles Membranes reduced particulates (> 99%) as well as a detoxifying model nerve agent (> 36%). The detoxifying and filtration properties improved with increasing Al 2 O 3 and were highest at 8% Al 2 O 3 [ 76 ] Electrospun chitosan/poly (vinyl alcohol) nanofiber membrane surface modified with SiO 2 and Ag nanoparticles Hydrophilic and antibacterial properties shown by membranes with addition of SiO 2 and Ag nanoparticles respectively.…”
Section: New Trends In Materials and Designs For Face Maskmentioning
confidence: 99%
“…They also found the order of deposition of MOF influenced pore size and CNFs/Cu/BTC with 3 times BTC deposition showed more uniform pore range (0.6 to 0.8 nm) as compared to CNFs/BTC/Cu-3 which showed wider pore range of 0.7 to 1.1 nm. The CNF/Cu/BTC-3 also showed preferential adsorption of CO 2 to be 14 times more than N 2 at 298 K and 100 kPa [ 74 ].…”
Section: New Trends In Materials and Designs For Face Maskmentioning
confidence: 99%