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The mechanical properties and solute permeability of the CA/PMB30 blended membrane could be controlled by preparation conditions such as the composition of the solvents and the solvent evaporation time.
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Aggregation size of the multi-stimuli-responsive polymer was controlled by preparation of the hydrophobic interaction at around N-position.
Whereas surface tension is a material property, roughness can be controlled by the preparation.
The size of the Eu-doped TiO2nanodots can be controlled by changing the preparation condition.
The size of the Eu-doped TiO2nanodots can be controlled by varying the preparation condition.
In the strategy developed, the inner diameter, the cross-linking degree and the thickness of the shells, and the length of the functional brushes could be controlled by adjusting the preparation conditions.
The strength of crystals may be controlled by crystallization conditions during preparation of a polymer.
Pore characteristics of the composite film catalysts could be controlled by a conventional membrane preparation technique, and they were related to the catalytic performance of the film catalysts.
The characterization data of the dried, calcined and reduced catalysts showed that the physico-chemical properties can be controlled by varying composition and preparation method.
In addition, by decreasing the columnar content of the membrane from the polymer without any spacers, which could be controlled by conditions in membrane preparation, the membrane forming ability and oxygen permselectivity were effectively enhanced (from 2.19 to 2.61) without any drop of oxygen permeability.
Crystal structure and physical property of zirconia could be controlled by changing the H2O/P123 mass ratio during the preparation step.
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CEO of Professional Science Editing for Scientists @ prosciediting.com