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Polymer particle radius (m).
Catalyst mass fraction in polymer particle.
Influence of process variables during polymer particle formation were optimized by using half-factorial design.
Under optimum parametric conditions polymer particle size 50 nm were obtained with a narrow size distribution.
The structure of core polymer particle is an important index of efficiency in hollow carbon nanosphere.
Influence of different variables on polymerization rate and polymer particle size has also been investigated.
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Well-designed biomaterial polymer particle-based vaccines will optimally promote immune cell antigen-presenting behavior while minimizing adverse inflammatory responses to the particles and encapsulated drugs or adjuvants.
Interfacial coupling is an effective approach to improve the polymer-particle composite dielectric film resistance to charge flow and dielectric breakdown.
Overall the agreement between the model and the experiment was good, indicating that the model predictions are valuable for the design of compositions and conditions for controlling particle distribution in polymer-particle composite films.
Additionally, changes in microstructure as a function of comonomer ratios of EVOH suggested CNC dispersion changed as a result of differences in polymer-particle compatibility.
Stable dispersion of sub-micron solid particles in polymer melts and solutions can be achieved in the presence of favorable polymer particle interactions.
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