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  2. Polymer architecture - Wikipedia

    en.wikipedia.org/wiki/Polymer_architecture

    Branch point in a polymer. Polymer architecture in polymer science relates to the way branching leads to a deviation from a strictly linear polymer chain. [1] Branching may occur randomly or reactions may be designed so that specific architectures are targeted. [1] It is an important microstructural feature.

  3. Branching (polymer chemistry) - Wikipedia

    en.wikipedia.org/wiki/Branching_(polymer_chemistry)

    In polymer chemistry, branching is the regular or irregular attachment of side chains to a polymer's backbone chain. It occurs by the replacement of a substituent (e.g. a hydrogen atom ) on a monomer subunit by another covalently-bonded chain of that polymer; or, in the case of a graft copolymer , by a chain of another type.

  4. Ring-opening metathesis polymerisation - Wikipedia

    en.wikipedia.org/wiki/Ring-opening_metathesis...

    In polymer chemistry, ring-opening metathesis polymerization (ROMP) is a type of chain-growth polymerization involving olefin metathesis. [1] The reaction is driven by relieving ring strain in cyclic olefins. [2] A variety of heterogeneous and homogeneous catalysts have been developed for different polymers and mechanisms. [3]

  5. Polymer - Wikipedia

    en.wikipedia.org/wiki/Polymer

    Branch point in a polymer. An important microstructural feature of a polymer is its architecture and shape, which relates to the way branch points lead to a deviation from a simple linear chain. [25] A branched polymer molecule is composed of a main chain with one or more substituent side chains or branches.

  6. Star-shaped polymer - Wikipedia

    en.wikipedia.org/wiki/Star-shaped_polymer

    An example would be star-(polyA; polyB; polyC) for a variegated (heteroarm) star polymer with three arm species, but an undefined number of arms and distribution of arms. When the number of arms and its distribution is known this can be designated as for example 6- star -(polyA( f 3); polyB( f 3)) where 6 arms exist in total whereof 3 consist ...

  7. Polymer chemistry - Wikipedia

    en.wikipedia.org/wiki/Polymer_chemistry

    Synthetic polymers are ubiquitous in commercial materials and products in everyday use, such as plastics, and rubbers, and are major components of composite materials. Polymer chemistry can also be included in the broader fields of polymer science or even nanotechnology , both of which can be described as encompassing polymer physics and ...

  8. Polymer characterization - Wikipedia

    en.wikipedia.org/wiki/Polymer_characterization

    Polymer characterization is the analytical branch of polymer science.. The discipline is concerned with the characterization of polymeric materials on a variety of levels. The characterization typically has as a goal to improve the performance of the materi

  9. Polymer engineering - Wikipedia

    en.wikipedia.org/wiki/Polymer_engineering

    Polymer engineering is generally an engineering field that designs, analyses, and modifies polymer materials. Polymer engineering covers aspects of the petrochemical industry, polymerization, structure and characterization of polymers, properties of polymers, compounding and processing of polymers and description of major polymers, structure property relations and applications.