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From other phenols, high molecular weight polymers were also obtained.
It took a lot of work, but one of my post docs, Avi Domb, then synthesized high molecular weight polymers.
Particles made using high molecular weight polymers (> 1,000 kg/mol) exhibited multi-faced structures, departing from the Janus morphology.
Larger molecular weight polymers created smoother, more densely covered surfaces (p < 0.05).
Aqueous coatings generally employ dispersed high molecular weight polymers as binders.
However, excess of BL resulted in low molecular weight polymers with substantially low yields.
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A fluoride-mediated double SNAr polycondensation method was successfully developed to prepare high-molecular weight polymers of intrinsic microporosity (PIMs).
Certain high-molecular weight polymers function by inhibiting the formation of a wax crystal structure that would prevent oil flow at low temperatures.
The most common epoxy compound is made from reacting bisphenol A with epichlorohydrin creating low-molecular weight polymers.
This extended the molecular weight range of chromatography to polypeptides, proteins, and high-molecular-weight polymers.
Bulk polymerizations are also difficult to stir because of the high viscosity associated with high-molecular-weight polymers.
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