pc-dmaa unit (SAS institute)
90
Structured Review
SAS institute
pc-dmaa unit
Pc Dmaa Unit, supplied by SAS institute, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pc-dmaa+unit/pc+dmaa+unit/pm40180097-213-1-10
Average 90 stars, based on 1 article reviews
Pc Dmaa Unit, supplied by SAS institute, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pc-dmaa+unit/pc+dmaa+unit/pm40180097-213-1-10
Average 90 stars, based on 1 article reviews
pc-dmaa unit - by Bioz Stars,
2026-09
90/100 stars
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Starch:Article Title: Chemical synthesis of biological grafted starch with poly(N, N-dimethyl acrylamide) and poly(ethyl acrylate) structure for conferring superior paste stability, adhesion to cellulose-based cotton, film properties, and desizability. Article Snippet: This study mainly aimed to reveal the superiority of the positively charged poly(N, N-dimethyl acrylamide) (PCPDMAA)/poly(ethyl acrylate) (PEA) structure to control poly(sodium allyl sulfonate) (PSAS)/PEA structure in enhancing the sizing properties (viscosity stability, adhesion to fibers (cellulose-based cotton and hydrophobic polyester), and film properties) and desizability of starch, and avoid desizing difficulty issue of positively charged PATAC-grafted starch, due to its worse desizing efficiency.. Also, it aimed to survey the influence of grafting ratio on these properties, to develop a new biobased starch adhesive, PC-PDMAA-g-starch-g-PEA (PC-PDMAA-g-S-gPEA), for the sizing of cotton and polyester.. Under a similar grafting ratio, the PC-PDMAA-g-S-g-PEA (IV) showed significantly superior bonding to both fibers, film elongation and endurance (p < 0.05), and better paste stability and desizability compared to control PSAS-g-starch-g-PEA (PSAS-g-S-g-PEA, IV#). Functional Assay:Article Title: Chemical synthesis of biological grafted starch with poly(N, N-dimethyl acrylamide) and poly(ethyl acrylate) structure for conferring superior paste stability, adhesion to cellulose-based cotton, film properties, and desizability. Article Snippet: This study mainly aimed to reveal the superiority of the positively charged poly(N, N-dimethyl acrylamide) (PCPDMAA)/poly(ethyl acrylate) (PEA) structure to control poly(sodium allyl sulfonate) (PSAS)/PEA structure in enhancing the sizing properties (viscosity stability, adhesion to fibers (cellulose-based cotton and hydrophobic polyester), and film properties) and desizability of starch, and avoid desizing difficulty issue of positively charged PATAC-grafted starch, due to its worse desizing efficiency.. Also, it aimed to survey the influence of grafting ratio on these properties, to develop a new biobased starch adhesive, PC-PDMAA-g-starch-g-PEA (PC-PDMAA-g-S-gPEA), for the sizing of cotton and polyester.. Under a similar grafting ratio, the PC-PDMAA-g-S-g-PEA (IV) showed significantly superior bonding to both fibers, film elongation and endurance (p < 0.05), and better paste stability and desizability compared to control PSAS-g-starch-g-PEA (PSAS-g-S-g-PEA, IV#). |