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It was established that polymers with a certain water miscibility/solubility can be manufactured via NANEX.
Imaging approaches have revealed that polymers of the actin homolog MreB play a central role.
Results of the second phase showed that polymers increase the mixtures' performances at in-service temperatures.
Results from DSC indicated that polymers displayed similar endotherms process in NSFBF and LSFBF.
Additives are minor but critical components that polymers need for processing and applications.
Today it is evident that polymers play a crucial if not the prime role in this field.
The adsorption experiment of them showed that polymers 3a c possessed excellent adsorption capabilities, however, little selectivities.
This model shows that polymers having the highest water sorption capacities have high values of imprinting factor.
It is to this vast molecular size that polymers owe their unique properties, and it is the reason that the German chemist Hermann Staudinger first referred to them in 1922 as macromolecules, or "giant molecules".
In 1922 Staudinger and J. Fritschi proposed that polymers are actually giant molecules (macromolecules) that are held together by normal covalent bonds, a concept that met with resistance from many authorities.
These results may indicate that polymers have interactions, but just enough to conduct ions for molecular recognition and correct epitaxy to orient crystals.
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