Biosynthesis and Molecular Strain - a Computational Study on the Conformation of Cyclic Bis(Bibenzyl) Constituents of Liverwort Species. Keseru, G., M. & Nogradi, M. Phytochemistry, 31(5):1573-1576, 1992.
abstract   bibtex   
The minimum strain energy of all possible cyclic bis(bibenzyl) skeletons derivable from a hypothetical acyclic precursor by oxidative cyclization have been computed and compared with the natural occurrence of compounds with the same skeletons.
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 title = {Biosynthesis and Molecular Strain - a Computational Study on the Conformation of Cyclic Bis(Bibenzyl) Constituents of Liverwort Species},
 type = {article},
 year = {1992},
 identifiers = {[object Object]},
 keywords = {biosynthesis,bis(bibenzyls),bryophytes,chemosystematics,ether),liverwort,macrocycles,macrocyclic bis(bibenzyls),marchantia,riccardia multifida,strain energy},
 pages = {1573-1576},
 volume = {31},
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 created = {2011-05-20T17:26:11.000Z},
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 last_modified = {2011-05-20T17:26:11.000Z},
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 abstract = {The minimum strain energy of all possible cyclic bis(bibenzyl) skeletons derivable from a hypothetical acyclic precursor by oxidative cyclization have been computed and compared with the natural occurrence of compounds with the same skeletons.},
 bibtype = {article},
 author = {Keseru, G M and Nogradi, M},
 journal = {Phytochemistry},
 number = {5}
}

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