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Furthermore, a constant mass addition (rather than constant molar addition), low molecular weight additives (e.g. sucrose) would have lower viscosity than high molecular weight additives.
Many small molecular weight additives are known to protect enzymes during exposure to high temperature [16], during lyophilization [17] and during catalysis in organic solvents [18, 19].
Dynamic mechanical and dielectric analysis have been used to examine the effects that low molecular weight additives have upon the secondary relaxation processes in polyethylene terephthalate.
The degree of enrichment at the air surface of the coating and the functionality were examined for different molecular weight additives with different block ratios obtained via Atom Transfer Radical Polymerization (ATRP).
The ionic groups have been linked to the polymer in order to improve the long-term AM activity since the low molecular weight additives commonly used tends to migrate toward the surface during use.
Low molecular weight additives (potassium salts) had an effect on the on the critical temperature and the swelling ratio; the strength of the observed effect corresponded to the position of the anion in the Hoffmeister series.
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The two different forms of enzymes (EPRP and PCMC) known to show higher activity in organic solvents were found to be different only in the way the low molecular weight additive was present along with the protein.
experiments have been used to examine the effects that low-molecular weight additives have on the secondary relaxation processes in polyethylene terephthalate (PET).
Finally it has been observed that by blending low-molecular weight additives into the polymer it is possible to significantly reduce the number of the phenyl ring flips in the polymer and thereby suppress the relaxation peak.
13C NMR confirms that no low-molecular-weight additives are present on a level above 0.01%.
The effects of low-molecular-weight additives on the interfacial behavior of polymer blends have been studied experimentally and theoretically.
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