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However, precise molecular structure control is greatly important in improving their flocculation performance.
Additional experimental results demonstrated that a suitable flocculant could be designed successfully according to the characteristics of the targeted contaminants and structure activity relationship, proving the effectiveness of molecular structure control for optimization of the flocculation process.
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These materials have taken advantage of processes such as hydrolytic mechanisms and have varied molecular structure to control hydrolysis rates.
At these scales, consideration of individual molecules and interacting groups of molecules in relation to the bulk macroscopic properties of the material or device becomes important, since it is control over the fundamental molecular structure that allows control over the macroscopic chemical and physical properties.
These results support the possibility of manipulating molecules on the surface and constructing well designed molecular structures by controlling the molecular substrate and intermolecular interactions.
This article demonstrates techniques for fabricating novel organic and carbon films, in which liquid crystal surface anchoring and flow are exploited to precisely control molecular structure (in organic films) or crystal structure (in carbon films).
In addition, the ability to now control molecular structure and morphology through versatile processability and surface modification options have expanded the utility for this protein in a range of biomaterial and tissue-engineering applications.
It was found that the significant steric hindrance between the hyperbranched polymers during graft polymerization played a key role in controlling molecular structure of the grafted polymers, while adsorption of grafting monomer onto SiO2 particles prior to the reaction facilitated higher degree of branching and apparent molecular weight of ungrafted polymers.
The adjustable molecular structure of diacetylenic monomers allows control of molecular architecture of the supramolecular assembly, resulting in modification of morphology and stacking structure of PDA films.
Photochromic molecular switches are a class of organic molecules that allow a reversible control over molecular structure, dipole moment, or conductivity with light.
Attractive features like nanoscopic size, narrow polydispersity index, excellent control over molecular structure, availability of multiple functional groups at the periphery and cavities in the interior distinguish them amongst the available polymers.
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