Matches in SemOpenAlex for { <https://semopenalex.org/work/W2891034466> ?p ?o ?g. }
- W2891034466 endingPage "18867" @default.
- W2891034466 startingPage "18863" @default.
- W2891034466 abstract "Abstract Here a highly efficient cascade approach is reported that combines a cycloaddition reaction with a regioselective strain‐release process to afford diverse heterocyclic frameworks through bifunctional catalysis. The cooperation of hydrogen‐bonding network activation and a regiodivergent strain‐assisted effect is the key to promoting this complex chemical transformation, leading to the generation of two different ring systems in high yields with excellent stereoselectivities. The reaction proceeded by a mechanism involving a “spring‐loaded” intermediate with switchable C−C bond cleavages achieved by controllable ring‐strain release. This reaction was also amenable to gram scale synthesis with only 0.1 mol % catalyst loading." @default.
- W2891034466 created "2018-09-27" @default.
- W2891034466 creator A5007510363 @default.
- W2891034466 creator A5012000152 @default.
- W2891034466 creator A5024857374 @default.
- W2891034466 creator A5027185848 @default.
- W2891034466 creator A5046838430 @default.
- W2891034466 creator A5089798190 @default.
- W2891034466 date "2018-11-16" @default.
- W2891034466 modified "2023-10-06" @default.
- W2891034466 title "Organocatalytic Regiodivergent C−C Bond Cleavage of Cyclopropenones: A Highly Efficient Cascade Approach to Enantiopure Heterocyclic Frameworks" @default.
- W2891034466 cites W1519272082 @default.
- W2891034466 cites W1925943785 @default.
- W2891034466 cites W1968828725 @default.
- W2891034466 cites W1977742215 @default.
- W2891034466 cites W1978193634 @default.
- W2891034466 cites W1982431833 @default.
- W2891034466 cites W1994628146 @default.
- W2891034466 cites W1998363683 @default.
- W2891034466 cites W2001585347 @default.
- W2891034466 cites W2005158307 @default.
- W2891034466 cites W2012152438 @default.
- W2891034466 cites W2014359309 @default.
- W2891034466 cites W2016836504 @default.
- W2891034466 cites W2020855910 @default.
- W2891034466 cites W2023591023 @default.
- W2891034466 cites W2027692386 @default.
- W2891034466 cites W2029502647 @default.
- W2891034466 cites W2030717370 @default.
- W2891034466 cites W2053013996 @default.
- W2891034466 cites W2055963715 @default.
- W2891034466 cites W2056216024 @default.
- W2891034466 cites W2060317673 @default.
- W2891034466 cites W2068377513 @default.
- W2891034466 cites W2079667952 @default.
- W2891034466 cites W2084848421 @default.
- W2891034466 cites W2096364050 @default.
- W2891034466 cites W2097433247 @default.
- W2891034466 cites W2100980399 @default.
- W2891034466 cites W2107374558 @default.
- W2891034466 cites W2111438991 @default.
- W2891034466 cites W2113007722 @default.
- W2891034466 cites W2125693641 @default.
- W2891034466 cites W2130701925 @default.
- W2891034466 cites W2133116046 @default.
- W2891034466 cites W2136155687 @default.
- W2891034466 cites W2151024923 @default.
- W2891034466 cites W2152420176 @default.
- W2891034466 cites W2152735339 @default.
- W2891034466 cites W2162531353 @default.
- W2891034466 cites W2165137359 @default.
- W2891034466 cites W2172290731 @default.
- W2891034466 cites W2264171776 @default.
- W2891034466 cites W2304723467 @default.
- W2891034466 cites W2316821379 @default.
- W2891034466 cites W2322515119 @default.
- W2891034466 cites W2328150795 @default.
- W2891034466 cites W2328522705 @default.
- W2891034466 cites W2328956971 @default.
- W2891034466 cites W2331224967 @default.
- W2891034466 cites W2337019702 @default.
- W2891034466 cites W2425377370 @default.
- W2891034466 cites W2551829126 @default.
- W2891034466 cites W2562962007 @default.
- W2891034466 cites W2577661240 @default.
- W2891034466 cites W2578528662 @default.
- W2891034466 cites W2581944996 @default.
- W2891034466 cites W2585403732 @default.
- W2891034466 cites W2787090316 @default.
- W2891034466 cites W2794134887 @default.
- W2891034466 cites W2949094024 @default.
- W2891034466 cites W2949757189 @default.
- W2891034466 cites W2951220146 @default.
- W2891034466 cites W2951514563 @default.
- W2891034466 cites W2951752244 @default.
- W2891034466 cites W2952407854 @default.
- W2891034466 cites W2953353179 @default.
- W2891034466 cites W4231836855 @default.
- W2891034466 cites W4234229962 @default.
- W2891034466 cites W4236222629 @default.
- W2891034466 cites W4240970644 @default.
- W2891034466 cites W4242494388 @default.
- W2891034466 cites W4242613691 @default.
- W2891034466 cites W4245821681 @default.
- W2891034466 cites W4246465209 @default.
- W2891034466 cites W4248913330 @default.
- W2891034466 cites W4248973707 @default.
- W2891034466 cites W4249408144 @default.
- W2891034466 cites W4251270751 @default.
- W2891034466 cites W4253516200 @default.
- W2891034466 cites W4256503849 @default.
- W2891034466 doi "https://doi.org/10.1002/chem.201803861" @default.
- W2891034466 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30199120" @default.
- W2891034466 hasPublicationYear "2018" @default.
- W2891034466 type Work @default.
- W2891034466 sameAs 2891034466 @default.
- W2891034466 citedByCount "23" @default.
- W2891034466 countsByYear W28910344662018 @default.