Matches in SemOpenAlex for { <https://semopenalex.org/work/W3100228880> ?p ?o ?g. }
- W3100228880 endingPage "4052" @default.
- W3100228880 startingPage "4043" @default.
- W3100228880 abstract "Abstract Cyanuric acid (CA), a triazine heterocycle, is extensively utilized for noncovalent self‐assembly. The association between poly(adenine) and CA into micron‐length fibers was a remarkable observation made by Sleiman and co‐workers, who proposed that adenine and CA adopt a hexameric rosette configuration in analogy with previously reported structures for CA assemblies. However, recent experimental observations from the Krishnamurthy group led to a reevaluation of the hexameric rosette model, wherein they have proposed a hydrogen‐bonded helicene model as an alternative. Our molecular dynamics simulations show that the hexad model is indeed unlikely and that this novel noncovalent helicene geometry, where the adenine and CA bases form an extended helical hydrogen‐bond network across the system, is a more probable structural motif. The existence of noncovalent helicene compounds may have wide‐ranging applications in DNA nanotechnology and helicene chemistry." @default.
- W3100228880 created "2020-11-23" @default.
- W3100228880 creator A5012128753 @default.
- W3100228880 creator A5012621100 @default.
- W3100228880 creator A5018319855 @default.
- W3100228880 creator A5061646901 @default.
- W3100228880 date "2021-01-26" @default.
- W3100228880 modified "2023-10-18" @default.
- W3100228880 title "Noncovalent Helicene Structure between Nucleic Acids and Cyanuric Acid" @default.
- W3100228880 cites W1966275919 @default.
- W3100228880 cites W1970617114 @default.
- W3100228880 cites W1971820073 @default.
- W3100228880 cites W1973386467 @default.
- W3100228880 cites W1976161355 @default.
- W3100228880 cites W1976499671 @default.
- W3100228880 cites W1978482484 @default.
- W3100228880 cites W1980722147 @default.
- W3100228880 cites W1981225934 @default.
- W3100228880 cites W1987499145 @default.
- W3100228880 cites W1997369405 @default.
- W3100228880 cites W1998681839 @default.
- W3100228880 cites W2003873426 @default.
- W3100228880 cites W2006049157 @default.
- W3100228880 cites W2007455490 @default.
- W3100228880 cites W2008686330 @default.
- W3100228880 cites W2011428226 @default.
- W3100228880 cites W2012010319 @default.
- W3100228880 cites W2012331842 @default.
- W3100228880 cites W2012823538 @default.
- W3100228880 cites W2017488022 @default.
- W3100228880 cites W2029448384 @default.
- W3100228880 cites W2029667189 @default.
- W3100228880 cites W2047100266 @default.
- W3100228880 cites W2047735309 @default.
- W3100228880 cites W2053942274 @default.
- W3100228880 cites W2056267312 @default.
- W3100228880 cites W2056482781 @default.
- W3100228880 cites W2059443620 @default.
- W3100228880 cites W2060840559 @default.
- W3100228880 cites W2061171972 @default.
- W3100228880 cites W2066853439 @default.
- W3100228880 cites W2070171578 @default.
- W3100228880 cites W2071881111 @default.
- W3100228880 cites W2075810171 @default.
- W3100228880 cites W2080641998 @default.
- W3100228880 cites W2081046982 @default.
- W3100228880 cites W2087566435 @default.
- W3100228880 cites W2103945336 @default.
- W3100228880 cites W2104042038 @default.
- W3100228880 cites W2108144639 @default.
- W3100228880 cites W2124528111 @default.
- W3100228880 cites W2127140884 @default.
- W3100228880 cites W2136729627 @default.
- W3100228880 cites W2147988069 @default.
- W3100228880 cites W2163915395 @default.
- W3100228880 cites W2168549269 @default.
- W3100228880 cites W2236820649 @default.
- W3100228880 cites W2283133204 @default.
- W3100228880 cites W2313986622 @default.
- W3100228880 cites W2328156901 @default.
- W3100228880 cites W2332712348 @default.
- W3100228880 cites W2342680453 @default.
- W3100228880 cites W2402794117 @default.
- W3100228880 cites W2433523887 @default.
- W3100228880 cites W2561073732 @default.
- W3100228880 cites W2606034902 @default.
- W3100228880 cites W2748360326 @default.
- W3100228880 cites W2775301394 @default.
- W3100228880 cites W2778156878 @default.
- W3100228880 cites W2806009700 @default.
- W3100228880 cites W2886266161 @default.
- W3100228880 cites W2894981225 @default.
- W3100228880 cites W2903887832 @default.
- W3100228880 cites W2952267119 @default.
- W3100228880 cites W2969567271 @default.
- W3100228880 cites W2977936184 @default.
- W3100228880 cites W2991962970 @default.
- W3100228880 cites W2994392641 @default.
- W3100228880 cites W3024385728 @default.
- W3100228880 cites W3030526241 @default.
- W3100228880 cites W3041388015 @default.
- W3100228880 cites W4211087439 @default.
- W3100228880 cites W4233162946 @default.
- W3100228880 cites W4242580155 @default.
- W3100228880 cites W4243309513 @default.
- W3100228880 cites W4254614487 @default.
- W3100228880 doi "https://doi.org/10.1002/chem.202004390" @default.
- W3100228880 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33174300" @default.
- W3100228880 hasPublicationYear "2021" @default.
- W3100228880 type Work @default.
- W3100228880 sameAs 3100228880 @default.
- W3100228880 citedByCount "13" @default.
- W3100228880 countsByYear W31002288802021 @default.
- W3100228880 countsByYear W31002288802022 @default.
- W3100228880 countsByYear W31002288802023 @default.
- W3100228880 crossrefType "journal-article" @default.
- W3100228880 hasAuthorship W3100228880A5012128753 @default.
- W3100228880 hasAuthorship W3100228880A5012621100 @default.