a free-standing calcium alginate polyacrylamide hydrogel

a free-standing calcium alginate/polyacrylamide hydrogel

A free-standing calcium alginate/polyacrylamide hydrogel

In this work, a free-standing calcium alginate/polyacrylamide (CA/PAM) hydrogel filtration membrane was synthesized via UV radiation-reduced polymerization using acrylamide as the monomer, sodium alginate as the matrix, urea as the pore-forming agent, N,N′-methylene-bisacrylamide (MBA) as the covalent crosslinker, and CaCl 2 as the ionic

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a free-standing calcium alginate/polyacrylamide hydrogel

A free-standing calcium alginate/polyacrylamide hydrogel

A free-standing calcium alginate/polyacrylamide nanofiltration membrane was prepared. • The CA/PAM hydrogel nanofiltration membrane exhibited excellent anti-fouling properties. • The fabrication process is simple and low cost without producing organic wastewater.

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a free-standing calcium alginate/polyacrylamide hydrogel

A free-standing calcium alginate/polyacrylamide hydrogel

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization June 2015 Desalination 365

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calcium alginate hydrogel filtration membrane with excellent

Calcium alginate hydrogel filtration membrane with excellent

A free-standing calcium alginate/polyacrylamide hydrogel filtration membrane with high anti-fouling performance: preparation and characterization Desalination , 365 ( 2015 ) , pp. 234 - 241 Article Download PDF CrossRef View Record in Scopus Google Scholar

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performance and biocompatibility of extremely tough alginate

Performance and biocompatibility of extremely tough alginate

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization Desalination, Volume 365, 2015, pp. 234-241 Download PDF View details

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development of multifunctional nano/ultrafiltration membrane

Development of multifunctional nano/ultrafiltration membrane

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: preparation and characterization Desalination , 365 ( 2015 ) , pp. 234 - 241 Article Download PDF CrossRef View Record in Scopus Google Scholar

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calcium alginate-coated electrospun polyhydroxybutyrate

Calcium alginate-coated electrospun polyhydroxybutyrate

Zhang X, Lin B, Zhao K, Wei J, Guo J, Cui W, Liu D, Li J (2015) A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: preparation and characterization. Desalination 365:234–241. Article Google Scholar 18

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applications of protein-resistant polymer and hydrogel

Applications of protein-resistant polymer and hydrogel

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization. Desalination. 2015; 365: 234-241. Ju H, et al. Preparation and characterization of crosslinked poly (ethylene glycol) diacrylate hydrogels as fouling-resistant membrane coating materials.

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desalination of dye utilizing carboxylated tio2/calcium

Desalination of dye utilizing carboxylated TiO2/calcium

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization Xinxin Zhang , Beibei Lin , +6 authors Jian-Xin.

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kongyin zhao | tianjin polytechnic university | tjpu

Kongyin ZHAO | Tianjin Polytechnic University | TJPU

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization Article Jun 2015

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fatigue damage–resistant physical hydrogel adhesion

Fatigue Damage–Resistant Physical Hydrogel Adhesion

Indeed, it has been reported that the adhesion energy between a calcium alginate-polyacrylamide hydrogel and a porcine skin is 580 J/m 2 under monotonic load but curtails dramatically to 24 J/m 2 under fatigue load (Ni et al., 2020).

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calcium alginate-coated electrospun polyhydroxybutyrate

Calcium alginate-coated electrospun polyhydroxybutyrate

Zhang X, Lin B, Zhao K, Wei J, Guo J, Cui W, Liu D, Li J (2015) A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: preparation and characterization. Desalination 365:234–241. Article Google Scholar 18

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efficient removal of cd2+ ion from water by calcium alginate

Efficient removal of Cd2+ ion from water by calcium alginate

In our previous work, a free-standing calcium alginate (CaAlg) hydrogel filtration membrane was prepared using polyethylene glycol as the pore-forming agent (Zhao et al. 2015). In another study, calcium alginate/polyacrylamide hydrogel filtration membrane was synthesized using acrylamide as monomer, sodium alginate as matrix, and urea as pore

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preparation and characterization of a bi-layered nano

Preparation and characterization of a bi-layered nano

Zhang XX, Lin BB, Zhao KY, Wei JF, Guo J, Cui WK, Jiang S, Liu D, Li JX (2015) A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: preparation and characterization. Desalination 365:234–241. Article CAS Google Scholar

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removal of dyes and cd2+ in water by kaolin/calcium alginate

Removal of Dyes and Cd2+ in Water by Kaolin/Calcium Alginate

Kaolin/calcium alginate (kaolin/CaAlg) free-standing membranes were prepared by adding different amounts of Kaolin into the sodium alginate (NaAlg) casting solution and crosslinked by Ca2+ using urea as porogen agent. The morphology of the kaolin/CaAlg filtration membrane was characterized by scanning electron microscope (SEM). Then the kaolin/CaAlg membrane was used for the removal of dyes

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continuous liquid interface production of alginate

Continuous Liquid Interface Production of Alginate

[37]. Huang et al. introduced supramolecular, biocompatible alginate/polyacrylamide shape-memory hydrogels for biomedical and tissue engineering via CLIP technology [49]. In addition, 3D-printed

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fatigue damage–resistant physical hydrogel adhesion

Fatigue Damage–Resistant Physical Hydrogel Adhesion

Indeed, it has been reported that the adhesion energy between a calcium alginate-polyacrylamide hydrogel and a porcine skin is 580 J/m 2 under monotonic load but curtails dramatically to 24 J/m 2 under fatigue load (Ni et al., 2020).

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kongyin zhao | tianjin polytechnic university | tjpu

Kongyin ZHAO | Tianjin Polytechnic University | TJPU

A free-standing calcium alginate/polyacrylamide hydrogel nanofiltration membrane with high anti-fouling performance: Preparation and characterization Article Jun 2015

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adsorption and recognition of protein molecular imprinted

Adsorption and recognition of protein molecular imprinted

Kaolin/calcium alginate (kaolin/CaAlg) free-standing membranes were prepared by adding different amounts of Kaolin into the sodium alginate (NaAlg) casting solution and crosslinked by Ca2+ using

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recent progress of polysaccharide‐based hydrogel interfaces

Recent Progress of Polysaccharide‐Based Hydrogel Interfaces

Dai and coworkers synthesized a novel sodium alginate–polyacrylamide divalent ion crosslinking hydrogel (Cu 2+, Zn 2+, Sr 2+, and Ca 2+) and compared in vitro and in vivo for mechanical performance, antibacterial properties, swelling rate, and biocompatibility. 184 The swelling rate of the hydrogels significantly increased at different times

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review of alginate-based hydrogel bioprinting for application

Review of alginate-based hydrogel bioprinting for application

This review paper is devoted to explicating the bioprinting (3D/4D) of alginate hydrogels, which are extracts from brown algae, through extrusion additive manufacturing. Alginates are salt derivatives of alginic acid and constitute long chains of polysaccharides, which provides pliability and gelling adeptness to their structure.

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(pdf) applications of protein-resistant polymer and hydrogel

(PDF) Applications of protein-resistant polymer and hydrogel

Nonspecific protein adsorption at interfaces is a significant issue in the development of robust biosensors and implantable biomaterials. The reduction of nonspecific protein adsorption plays a key role in improving the compatibility and efficiency

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hydrogels for cardiac tissue engineering | npg asia materials

Hydrogels for cardiac tissue engineering | NPG Asia Materials

Some of the widely used hydrogels include collagen, 2 gelatin, 2 Matrigel, 20 alginate, 21 fibrin, 2 poly(2-hydroxyethyl methacrylate) (PHEMA), 22 poly(N-isopropylacrylamide) (PNIPAAM) 23 and poly

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fabrication of hydrogel of hydroxypropyl cellulose (hpc

Fabrication of hydrogel of hydroxypropyl cellulose (HPC

Novel environmental friendly hydroxypropyl cellulose (HPC) hydrogels were fabricated upon compositing with graphene oxide (GO) in this work. In order to promote a more homogeneous dispersion of GO sheets in HPC, GO was firstly modified with HPC chains through esterification. The morphology and chemical structure of the functionalized HPC-GO were characterized by transmission electron

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