polyacrylamide and poly n n-dimethylacrylamide belgique

polyacrylamide and poly(n,n-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylamide) grafted cellulose nanocrystals as efficient flocculants for kaolin suspension Int J Biol Macromol . 2017 Oct;103:1107-1112. doi: 10.1016/j.ijbiomac.2017.05.098.

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biodegradable flocculants based on polyacrylamide and poly(n

Biodegradable flocculants based on polyacrylamide and poly(N

Biodegradable flocculants based on polyacrylamide and poly(N,N-dimethylacrylamide) grafted amylopectin. Kolya H(1), Tripathy T(2). Author information: (1)Postgraduate Division of Chemistry, Midnapore College, Midnapore, Paschim Medinipur 721101, West Bengal, India.

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effect of quasi-interpenetrating network of polyacrylamide

Effect of quasi-interpenetrating network of polyacrylamide

Effect of quasi-interpenetrating network of polyacrylamide and poly(N,N-dimethylacrylamide) on separation of dsDNA fragments and basic protein using CE. Song W(1), Zhou D, Peng S, Wang Y. Author information: (1)Department of Polymer Science and Engineering, CAS Key Laboratory of Soft Matter Chemistry, University of Science and Technology of

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poly( n, n'-diethylacrylamide)-based thermoresponsive

Poly( N, N'-Diethylacrylamide)-Based Thermoresponsive

Temperature response of double network (DN) hydrogels composed of thermoresponsive poly(N,N'-diethylacrylamide) (PDEAAm) and hydrophilic polyacrylamide (PAAm) or poly(N,N`-dimethylacrylamide) (PDMAAm) was studied by a combination of swelling measurements, differential scanning calorimetry (DSC) and 1 H NMR and UV-Vis spectroscopies.

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biodegradable flocculants based on polyacrylamide and poly(n

Biodegradable flocculants based on polyacrylamide and poly(N

Synthesis of amylopectin grafted polyacrylamide (AP-g-PAM) and poly(N,N-dimethylacrylamide) (AP-g-PDMA) was carried out by Ce 4+ in water medium. The reaction conditions for maximum grafting was optimized by varying the reaction variables, including the concentration of monomers, ceric ammonium nitrate (CAN), amylopectin, reaction time and temperature.

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poly(n,n-dimethylacrylamide)-grafted polyacrylamide: a self

Poly(N,N-dimethylacrylamide)-grafted polyacrylamide: A self

3086 Electrophoresis 2006, 27, 3086–3092 Jiyou Zhang1 Research Article Nguyet Thuy Tran1 Jérémie Weber2 Cyrine Slim1 Poly(N,N-dimethylacrylamide)-grafted Jean-Louis Viovy2 Myriam Taverna1 polyacrylamide: A self-coating copolymer for 1 Groupe de Chimie Analytique de sieving separation of native proteins by CE Paris Sud, Faculté de Pharmacie, The potential of a series of newly synthesized

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poly(n,n-dimethylacrylamide) | sigma-aldrich

Poly(N,N-dimethylacrylamide) | Sigma-Aldrich

Poly(NIPAM-co-MAA-co-ODA), functionalized polyNIPAM, functionalized polyacrylamide, Polyacrylamide, polyNIPAM Linear Formula : (C 6 H 11 NO) m (C 4 H 6 O 2 ) n (C 21 H 40 O 2 ) p

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equation leads to better ce polymers by design - 2006 - wiley

Equation leads to better CE polymers by design - 2006 - Wiley

In particular, they decided to develop this equation for a copolymer consisting of polyacrylamide and poly(N,N-dimethylacrylamide) (PAM-co-PDMA), which is already used for DNA separations in microchip CE.

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polyacrylamide and poly(n,n-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylmide) are water-soluble polymers, which has been widely used in flocculation of industrial wastewater, especially polyacrylamide , . Meanwhile, cellulose nanocrystals has abundant hydroxyl groups and high specific surface area, which shows the potential to be used as flocculants.

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polyacrylamide and poly(n,n-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylamide) grafted

Polyacrylamide and poly(N,N-dimethylacrylamide) grafted cellulose nanocrystals as efficient flocculants for kaolin suspension. Ting Liu College of Material Science and Engineering, South China University of Technology, Guangzhou, Guangdong 510640, China.

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polyacrylamide and poly n,n-dimethylacrylamide grafted

Polyacrylamide and Poly N,N-Dimethylacrylamide Grafted

Synthesis of Hydroxyethyl Starch grafted Polyacrylamide (HES-g-PAM) and Poly N,N-dimethylacrylamide (HES-g-PDMA) is carried out by Ce+4 in water medium.

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poly(n,n‐dimethylacrylamide)‐grafted polyacrylamide: a self

Poly(N,N‐dimethylacrylamide)‐grafted polyacrylamide: A self

The potential of a series of newly synthesized poly(N,N‐dimethylacrylamide) (PDMA) grafted polyacrylamide (PAM) copolymers (P(AM‐PDMA)) as a replaceable separation medium for protein analysis was studied. A comparative study with and without copolymers was performed; the separation efficiency, analysis reproducibility and protein recovery

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flocculation and color removal performances of polyacrylamide

Flocculation and Color Removal Performances of Polyacrylamide

Haradhan Kolya, Tridib Tripathy, Flocculation and Color Removal Performances of Polyacrylamide and Poly N, N-Dimethylacrylamide Grafted Starch: A Comparative Study, American Journal of Polymer Science and Technology. Vol. 3, No. 1, 2017, pp. 1-11.

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effect of quasi‐interpenetrating network of polyacrylamide

Effect of quasi‐interpenetrating network of polyacrylamide

Quasi‐interpenetrating network (quasi‐IPN) of linear polyacrylamide (LPA) with low molecular mass and poly(N,N‐dimethylacrylamide) (PDMA), which is shown to uniquely combine the superior sieving ability of LPA with the coating ability of PDMA, has been synthesized for application in dsDNA and basic protein separation by CE. The performance of quasi‐IPN on dsDNA separation was

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polymers | free full-text | synthesis of β-cyclodextrin-based

Polymers | Free Full-Text | Synthesis of β-cyclodextrin-Based

In order to prepare stimuli-responsive multi-arm copolymers, containing a stimuli-responsive (poly(N-isopropylacrylamide) (PNIPAAm)) and a non-responsive block (poly(N, N-dimethylacrylamide) (PDMAAm)), consecutive ATRP was carried out. The polymers were characterized intensively using NMR spectroscopy and size exclusion chromatography (SEC

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staff profile - ustc

Staff Profile - USTC

5) Effect of quasi-interpenetration network of polyacrylamide and poly (N, N-dimethylacrylamide) on separation of dsDNA fragments ans basic protein using CE , J. Sep. Sci. , , 2009, 32, 671-680 6) Association of block copolymer in nonselective solvent , Macromolecules , , 2009, 42, 5339-5344

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flocculation and color removal performances of polyacrylamide

Flocculation and Color Removal Performances of Polyacrylamide

2 Haradhan Kolya and Tridib Tripathy: Flocculation and Color Removal Performances of Polyacrylamide and Poly N, N-Dimethylacrylamide Grafted Starch: A Comparative Study shear resistance properties. Again polysaccharides are shear stable, moderately efficient, easily available, inexpensive and biodegradable [10].

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poly(n,n-dimethylacrylamide)-grafted polyacrylamide: a self

Poly(N,N-dimethylacrylamide)-grafted polyacrylamide: a self

Synthesis of poly(N, N-dimethylacrylamide)-block-poly(ethylene oxide)-block-poly(N, N-dimethylacrylamide) and its application for separation of proteins by capillary zone electrophoresis. Xu J, Yang L, Luo Z, Wang Y. Electrophoresis, 31(10):1713-1720, 01 May 2010 Cited by: 11 articles | PMID: 20411567

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effect of quasi‐interpenetrating network of polyacrylamide

Effect of quasi‐interpenetrating network of polyacrylamide

Quasi‐interpenetrating network (quasi‐IPN) of linear polyacrylamide (LPA) with low molecular mass and poly(N,N‐dimethylacrylamide) (PDMA), which is shown to uniquely combine the superior sieving ability of LPA with the coating ability of PDMA, has been synthesized for application in dsDNA and basic protein separation by CE. The performance of quasi‐IPN on dsDNA separation was

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electrophoresis 1 poly-n-hydroxyethylacrylamide (polyduramide

Electrophoresis 1 Poly-N-hydroxyethylacrylamide (polyDuramide

useful of which so far are linear polyacrylamide (LPA) and poly-N,N-dimethylacrylamide (PDMA). The best sequen-cing performance to date is that of LPA matrices, which can produce up to 1000 bases of contiguous sequence in about 1 h [14] and 1300 bases in 2 h [15], if employed

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polyacrylamide hydrogel membranes with controlled pore sizes

Polyacrylamide hydrogel membranes with controlled pore sizes

We developed a method to characterize polymer-supported polyacrylamide crosslinked hydrogel networks using a range of well-defined poly(N, N-dimethylacrylamide)-coated gold nanoparticles with diameters ranging from 3 to 48 nm under ultrafiltration conditions of 16 bar.

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grafting poly(n,n-dimethylacrylamide) from cellulose

Grafting poly(N,N-dimethylacrylamide) from cellulose

Polymer grafting is an efficient way to obtain functional cellulose nanocrystals. In this work, we used a “macro-RAFT (macromolecular reversible addition–fragmentation chain transfer) agent-assisted” strategy, which adds extra amount of amphiphilic macro-RAFT agent with low molecular weight to graft poly(N,N-dimethylacrylamide) (PDMA) from cellulose nanocrystals. Successful grafting was

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morphology of water-soluble interpolyelectrolyte complexes

Morphology of Water-Soluble Interpolyelectrolyte Complexes

Accelerating Dissolution of Polyacrylamide in Offshore Oil Field. Bulletin of the Korean Chemical Society 2015, 36 -graft-poly(N,N-dimethylacrylamide) copolymers.

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water‐soluble acrylamide copolymers. x. flocculation

water‐soluble acrylamide copolymers. x. flocculation

Polyacrylamide (IUPAC poly(2-propenamide) or poly(1-carbamoylethylene), abbreviated as PAM) is a polymer (-CH 2 CHCONH 2-) formed from acrylamide subunits. It can be synthesized as a simple linear-chain structure or cross-linked, typically using N,N '-methylenebisacrylamide.In the cross-linked form, the possibility of the monomer being present

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