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Our goal was to produce and study biomacromolecules comprising superfolder GFP (sfGFP) decorated with temperature-responsive poly[(oligo ethylene glycol) methyl ether methacrylate] (PEGMA) chains of different molecular weights on more than one site, by copper-catalyzed azide alkyne cycloaddition reaction (CuAAc).
Three molecular models are proposed to depict visually the effect of PEO with different molecular weights on chain conformations and entanglements of SA.
Only the polymerization in DMSO mediated by [Ru η6-C6H6)(C6H4-2-CH2NMe2)(MeCN)]PF6 (1) showed dependence of the molecular weights on conversion.
In the present investigation, we studied the effect of COS of varying molecular weights on the formation COS-TPP nanoparticles coated with HA.
The effects of galactomannans with different molecular weights on the heat induced gelation characteristics of soybean protein were investigated using dynamic small-strain rheometry, under conditions where the proteins carry a net negative charge (pH 7).
Effects of varying blend ratios, spinning temperatures, and molecular weights on fiber formation were studied and optimum conditions for formation of uniform non-woven fiber mats with potential applications for air and water filtration were obtained.
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Effect of polymer molecular weight on the tumor targeting characteristics of self-assembled glycol chitosan nanoparticles.
A strong effect of alkyl side chain length and molecular weight on the polymers solubility was observed.
The influence of chain adsorption and grafted side-chain molecular weight on rheology was also tested.
In this study, the influence of PVA molecular weight on electrospun nanofibers was investigated.
The effect of molecular weight on phase transition was also examined.
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