Advances and Applications of Block Copolymers
The most important class of polymers is block copolymers (BCPs) since they can be prepared through different methods and exhibit various properties combined with chemically different segments. The importance of block copolymers can be supported by the multitude of related manuscripts published daily...
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Language | English |
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MDPI - Multidisciplinary Digital Publishing Institute
2023
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Abstract | The most important class of polymers is block copolymers (BCPs) since they can be prepared through different methods and exhibit various properties combined with chemically different segments. The importance of block copolymers can be supported by the multitude of related manuscripts published daily, their use in practical applications in almost all areas, and novel discoveries based on BCPs in many aspects of life. This Special Issue focuses on various matters from different areas of block copolymer research, showing advances and applications in self-assembly, crystallization, synthesis, chemical modification, 3D printing, membranes, energy materials, nanotechnology, hybrid materials, micelles, order–disorder transition, and biomaterials. |
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AbstractList | The most important class of polymers is block copolymers (BCPs) since they can be prepared through different methods and exhibit various properties combined with chemically different segments. The importance of block copolymers can be supported by the multitude of related manuscripts published daily, their use in practical applications in almost all areas, and novel discoveries based on BCPs in many aspects of life. This Special Issue focuses on various matters from different areas of block copolymer research, showing advances and applications in self-assembly, crystallization, synthesis, chemical modification, 3D printing, membranes, energy materials, nanotechnology, hybrid materials, micelles, order–disorder transition, and biomaterials. |
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Snippet | The most important class of polymers is block copolymers (BCPs) since they can be prepared through different methods and exhibit various properties combined... |
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SubjectTerms | 3D printing 4D printing acrylic block copolymer adsorption amphipathic anionic polymerization asymmetric interactions baroplasticity barotropicity biobased biomaterials block copolymer block copolymer template block copolymers Chemistry collagen conjugated copolymers copolymers Cr(VI) cyclic voltammetry cytotoxicity diblock copolymer double gyroid double hydrophilic block copolymers energy conversion energy dissipation epoxy Flory–Huggins interaction parameter general self-assembly hierarchical pores high χ terpolymers HOMO hybrid copolymer hybrid materials hydroboration/oxidation reactions indacenothienothiophene indacenothiophene isotactic polypropylene Landau analysis low molecular weight triblock terpolymers lower disorder-order transition LUMO Mathematics and Science melt-crystallization membranes metallocene catalysts modification of PB1 modifier n/a nanochannels nanonetwork nanostructuring optical energy gap Organic chemistry phenol photosensitizers poly(4-vinylpyridine) poly(N-methyl-4-vinylpyridinium iodide) polyacrylamide polyion complex micelles polylactides polymer brushes polymerization-induced self-assembly porous carbon fibers porphyrins preferential solvation propylene-butene copolymers quaternization Reference, Information and Interdisciplinary subjects Research and information: general rGO ring-opening polymerization role of defects excluded from crystals scaffolds self-assembly silica small-angle X-ray scattering solvatochromism star-block copolymer stereocomplexation supercapacitor templated polymerization thermoplastic elastomer tissue engineering topology triblock terpolymers tributylborane upper order-disorder transition weak segregation regime wettability α and γ forms |
Title | Advances and Applications of Block Copolymers |
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