Matches in SemOpenAlex for { <https://semopenalex.org/work/W2155111738> ?p ?o ?g. }
- W2155111738 endingPage "6611" @default.
- W2155111738 startingPage "6605" @default.
- W2155111738 abstract "Abstract Suprapolymers : The synthesis of symmetrically end‐functionalized polymers in a single step has been developed by means of ring‐opening metathesis polymerization by using a bimetallic ruthenium initiator and functional chain terminators. Self‐assembly of the resulting polymers allows for the formation of supramolecular alternating block copolymers (see figure). magnified image A bimetallic ruthenium olefin metathesis initiator was synthesized and used to polymerize functionalized norbornenes, affording polymers that are living at both polymer chain‐ends. Using this bis‐ruthenium initiator strategy and combining it with functional chain‐terminators, highly‐efficient syntheses of either SCS‐Pd II pincer‐ or pyridine‐functionalized symmetrical telechelic polymers were developed. The terminal functional group incorporation was confirmed by 1 H NMR spectroscopy analyses. The telechelic polymers were self‐assembled into block copolymers by means of metal coordination between corresponding terminal recognition units. The self‐assembly process was monitored by 1 H NMR spectroscopy revealing nearly quantitative functionalization. The resulting supramolecular block copolymers were further characterized by viscometry and dynamic light scattering." @default.
- W2155111738 created "2016-06-24" @default.
- W2155111738 creator A5047208805 @default.
- W2155111738 creator A5054614556 @default.
- W2155111738 creator A5062052450 @default.
- W2155111738 date "2009-06-29" @default.
- W2155111738 modified "2023-10-08" @default.
- W2155111738 title "Supramolecular Alternating Block Copolymers via Metal Coordination" @default.
- W2155111738 cites W1479725456 @default.
- W2155111738 cites W1968583441 @default.
- W2155111738 cites W1969758126 @default.
- W2155111738 cites W1971504477 @default.
- W2155111738 cites W1973790245 @default.
- W2155111738 cites W1981999832 @default.
- W2155111738 cites W1988962708 @default.
- W2155111738 cites W1992144935 @default.
- W2155111738 cites W1993986920 @default.
- W2155111738 cites W1997411045 @default.
- W2155111738 cites W2006962710 @default.
- W2155111738 cites W2007252698 @default.
- W2155111738 cites W2014313640 @default.
- W2155111738 cites W2018932342 @default.
- W2155111738 cites W2019370612 @default.
- W2155111738 cites W2020458119 @default.
- W2155111738 cites W2021886695 @default.
- W2155111738 cites W2031726690 @default.
- W2155111738 cites W2040739495 @default.
- W2155111738 cites W2046331274 @default.
- W2155111738 cites W2051706483 @default.
- W2155111738 cites W2051981698 @default.
- W2155111738 cites W2057376345 @default.
- W2155111738 cites W2057629067 @default.
- W2155111738 cites W2060093091 @default.
- W2155111738 cites W2062274477 @default.
- W2155111738 cites W2076399630 @default.
- W2155111738 cites W2078599818 @default.
- W2155111738 cites W2079483746 @default.
- W2155111738 cites W2086294412 @default.
- W2155111738 cites W2096275331 @default.
- W2155111738 cites W2098351311 @default.
- W2155111738 cites W2101291149 @default.
- W2155111738 cites W2117574031 @default.
- W2155111738 cites W2118124045 @default.
- W2155111738 cites W2118353928 @default.
- W2155111738 cites W2120018022 @default.
- W2155111738 cites W2131928429 @default.
- W2155111738 cites W2133320381 @default.
- W2155111738 cites W2139236859 @default.
- W2155111738 cites W2140151277 @default.
- W2155111738 cites W2149175654 @default.
- W2155111738 cites W2151953667 @default.
- W2155111738 cites W2152358087 @default.
- W2155111738 cites W2160602446 @default.
- W2155111738 cites W2164625219 @default.
- W2155111738 cites W2166127258 @default.
- W2155111738 cites W2951735417 @default.
- W2155111738 cites W4210748628 @default.
- W2155111738 cites W4243574148 @default.
- W2155111738 cites W4256457172 @default.
- W2155111738 doi "https://doi.org/10.1002/chem.200900573" @default.
- W2155111738 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/19499552" @default.
- W2155111738 hasPublicationYear "2009" @default.
- W2155111738 type Work @default.
- W2155111738 sameAs 2155111738 @default.
- W2155111738 citedByCount "44" @default.
- W2155111738 countsByYear W21551117382012 @default.
- W2155111738 countsByYear W21551117382013 @default.
- W2155111738 countsByYear W21551117382014 @default.
- W2155111738 countsByYear W21551117382015 @default.
- W2155111738 countsByYear W21551117382016 @default.
- W2155111738 countsByYear W21551117382017 @default.
- W2155111738 countsByYear W21551117382019 @default.
- W2155111738 countsByYear W21551117382021 @default.
- W2155111738 crossrefType "journal-article" @default.
- W2155111738 hasAuthorship W2155111738A5047208805 @default.
- W2155111738 hasAuthorship W2155111738A5054614556 @default.
- W2155111738 hasAuthorship W2155111738A5062052450 @default.
- W2155111738 hasConcept C130929614 @default.
- W2155111738 hasConcept C15920480 @default.
- W2155111738 hasConcept C159985019 @default.
- W2155111738 hasConcept C161790260 @default.
- W2155111738 hasConcept C178790620 @default.
- W2155111738 hasConcept C185592680 @default.
- W2155111738 hasConcept C188027245 @default.
- W2155111738 hasConcept C192562407 @default.
- W2155111738 hasConcept C32909587 @default.
- W2155111738 hasConcept C44228677 @default.
- W2155111738 hasConcept C521977710 @default.
- W2155111738 hasConcept C555196967 @default.
- W2155111738 hasConcept C93275456 @default.
- W2155111738 hasConceptScore W2155111738C130929614 @default.
- W2155111738 hasConceptScore W2155111738C15920480 @default.
- W2155111738 hasConceptScore W2155111738C159985019 @default.
- W2155111738 hasConceptScore W2155111738C161790260 @default.
- W2155111738 hasConceptScore W2155111738C178790620 @default.
- W2155111738 hasConceptScore W2155111738C185592680 @default.
- W2155111738 hasConceptScore W2155111738C188027245 @default.
- W2155111738 hasConceptScore W2155111738C192562407 @default.