Photonic crystal-metallic structures and applications
US-9223064-B2 · Dec 29, 2015 · US
US9453943B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9453943-B2 |
| Application number | US-201313930400-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 28, 2013 |
| Priority date | Jun 28, 2012 |
| Publication date | Sep 27, 2016 |
| Grant date | Sep 27, 2016 |
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The invention provides a class of block copolymers having a plurality of chemically different blocks, at least a portion of which incorporating polymer side chain groups having a helical secondary structure. The invention also provides structures generated by self-assembly of polymer blends including at least one block copolymer component, such as a brush block polymer or wedge-type block polymer. The invention provides, for example, periodic nanostructures and microstructures generated by self-assembly of block copolymers and polymer blends comprising a mixture of at least one block copolymer component, such as a brush block copolymer, and at least a second component.
Opening claim text (preview).
We claim: 1. A block copolymer comprising: a first polymer block comprising first repeating units; wherein each of said first repeating units of said first polymer block comprises a first polymer backbone group directly or indirectly covalently linked to a first polymer side chain group having a helical secondary structure, wherein each of said first polymer side chain groups of said first polymer block independently comprises a number of repeating units; and a second polymer block comprising second repeating units; wherein each of said second repeating units of said second polymer block comprises a second polymer backbone group directly or indirectly covalently linked to a second polymer side chain group that is different than said first polymer side chain group or a first wedge group; wherein said first and second repeating units are directly covalently linked along a backbone of said block copolymer; wherein said block copolymer has the formula (FX6A) or (FX6B) or (FX7): wherein R 1 is independently a hydrogen, C 1 -C 30 alkyl, C 3 -C 30 cycloalkyl, C 5 -C 30 aryl, C 5 -C 30 heteroaryl, C 1 -C 30 acyl, C 1 -C 30 hydroxyl, C 1 -C 30 alkoxy, C 2 -C 30 alkenyl, C 2 -C 30 alkynyl, C 5 -C 30 alkylaryl, —CO 2 R 30 , —CONR 31 R 32 , —COR 33 , —SOR 34 , —OSR 35 , —SO 2 R 36 , —OR 37 , —SR 38 , —NR 39 R 40 , —NR 41 COR 42 , C 1 -C 30 alkyl halide, phosphonate, phosphonic acid, silane, siloxane, silsesquioxane, C 2 -C 30 halocarbon chain, C 2 -C 30 perfluorocarbon, C 2 -C 30 polyethylene glycol, a metal, or a metal complex, wherein each of R 30 -R 42 is independently a H, C 5 -C 10 aryl or C 1 -C 10 alkyl; and wherein R 12 is independently a hydrogen, C 1 -C 30 alkyl, C 3 -C 30 cycloalkyl, C 5 -C 30 aryl, C 5 -C 30 heteroaryl, C 1 -C 30 acyl, C 1 -C 30 hydroxyl, C 1 -C 30 alkoxy, C 2 -C 30 alkenyl, C 2 -C 30 alkynyl, C 5 -C 30 alkylaryl, —CO 2 R 30 , —CONR 31 R 32 , —COR 33 , —SOR 34 , —OSR 35 , —SO 2 R 36 , —OR 37 , —SR 38 , —NR 39 R 40 , —NR 41 COR 42 , C 1 -C 30 alkyl halide, phosphonate, phosphonic acid, silane, siloxane, silsesquioxane, C 2 -C 30 halocarbon chain, C 2 -C 30 perfluorocarbon, C 2 -C 30 polyethylene glycol, a metal, or a metal complex; and wherein R 1 and R 12 are different groups; wherein Q 1 is a first backbone terminating group and Q 2 is a second backbone terminating group; L 1 is a first linking group, L 2 is a second linking group; each of n and m is independently an integer selected from the range of 20 to 2000; K is a repeating group of said second polymer side chain group, G 1 is said first wedge group; each of R 10 and R 11 is independently a polymer side chain terminating group; and each of p and q is independently an integer selected from the range of 30 to 2000. 2. The block copolymer of claim 1 having a molecular weight selected from the range of 100,000 Da to 30,000,000 Da. 3. The block copolymer of claim 1 , wherein a size (R) of the copolymer increases substantially linearly with a molecular weight (MW) of said block copolymer pursuant to the expression (E1) wherein 0.85<x<1: R∝MW x (E1). wherein said size (R) of the block copolymer corresponds to a length of the block copolymer; or wherein said size (R) of the block copolymer corresponds to a domain length or a root mean square radius (RMSR) of a supramolecular assembly of a plurality of said block copolymers. 4. The block copolymer of claim 1 , wherein said first polymer side chain group having said helical secondary structure, said second polymer side chain group, said first wedge group or any combination of these provides steric interactions within said block copolymer resulting in said backbone of said block copolymer being an extended backbone; or wherein said first polymer side chain groups of said first polymer block are large enough to result in said backbone of said block copolymer being an extended backbone; or wherein said second polymer side chain groups of said second polymer block are large enough to result in said backbone of said block copolymer being an extended backbone. 5. The block copolymer of claim 1 , wherein said first polymer backbone groups and second polymer backbone groups are obtained from a ring opening metathesis polymerization (ROMP) reaction; or wherein said first polymer side chain groups of said first polymer block comprise repeating units obtained via anionic polymerization, cationic polymerization, free radical polymerization, group transfer polymerization, or ring-opening polymerization; or wherein said second polymer side chain groups of said second polymer block comprise repeating units obtained via anionic polymerization, cationic polymerization, free radical polymerization, group transfer polymerization, or ring-opening polymerization. 6. The block copolymer of claim 1 , wherein each of said first polymer side chain groups of said first polymer block has a rigid-rod helical secondary structure. 7. The block copolymer of claim 1 , wherein each of said first polymer side chain groups of said first polymer block has a molecular weight greater than or equal to 500 Da; or wherein said first polymer side chain groups of said first polymer block are characterized by polydispersity index less than or equal to 3. 8. The block copolymer of claim 1 , wherein said second polymer block comprises said second polymer side chain groups. 9. The block copolymer of claim 8 , wherein said second polymer side chain groups have a helical secondary structure. 10. The block copolymer of claim 8 , wherein each of said second polymer side chain groups of said second polymer block has a rigid-rod helical secondary structure. 11. The block copolymer of claim 8 , wherein each of said second polymer side chain groups of said second polymer block has a molecular weight greater than or equal to 500 Da; or wherein said second polymer side chain groups of said second polymer block are characterized by polydispersity index less than or equal to 3. 12. The block copolymer of claim 8 , wherein said second polymer side chain groups are an unsubstituted or substituted polyisocyanate group, polymethacrylate group, polyacrylate group, polymethacrylamide group, polyacrylamide group, polyquinoxaline group, polyguanidine group, polysilane group, polyacetylene group, polyamino acid group, polypeptide group, polychloral group, polylactide group, polystyrene group, polyacrylate group, poly tert-butyl acrylate group, polymethyl methacrylate group, polysiloxane group, polydimethylsiloxane group, poly n-butyl acrylate group, polyethylene glycol group, polyethylene oxide group, polyethylene group, polypropylene group, polytetrafluoroethylene group, or polyvinyl chloride group. 13. The block copolymer of claim 1 , wherein said first polymer side chain groups are indirectly linked to said first polymer backbone groups; or wherein said second polymer side chain groups or said first wedge groups are indirectly linked to said second polymer backbone groups. 14. The block copolymer of claim 1 , wherein each of L 1 and L 2 is independently a single bond, —(CH 2 ) f —, —(CH 2 ) f O(CH 2 ) r —, —(CH 2 ) f S(CH 2 ) r —, —(CH 2 ) f O 2 (CH 2 ) r —, —(CH 2 ) f SO(CH 2 ) r —, —(CH 2 ) f SO 2 (CH 2 ) r —, —(CH 2 ) f SO 3 (CH 2 ) r —, —(CH 2 ) f OSO 2 (CH 2 ) r —, —(CH 2 ) f NR 19 (CH 2 ) r —, —(CH 2 ) f CO(CH 2 ) r —, —(CH 2 ) f COO(CH 2 ) r —, —(CH 2 ) f OCO(CH 2 ) r —, —(CH 2 ) f OCOO(CH 2 ) r —, —(CH 2 ) f CONR 20 (CH 2 ) r —, —(CH 2 ) f NR 21 CO(CH 2 ) r —, —(CH 2 ) f OCONR 22 (CH 2 ) r —, —(CH 2 ) f NR 23 COO(CH 2 ) r
Anhydrides, e.g. cyclic anhydrides · CPC title
Macromolecular compounds obtained by polymerisation on to a macromolecule having groups capable of inducing the formation of new polymer chains bound exclusively at one or both ends of the starting macromolecule (on to polymers modified by introduction of unsaturated end groups C08F290/02) · CPC title
made of photonic crystals or photonic band gap materials (photonic band-gap structures or photonic lattices in integrated optics G02B6/1225; photonic band-gap structures or photonic lattices in optical fibres G02B6/02295) · CPC title
Imides, e.g. cyclic imides · CPC title
Macromolecular compounds obtained by interreacting polymers involving only carbon-to-carbon unsaturated bond reactions, in the absence of non-macromolecular monomers · CPC title
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