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Albert Jakob Eschenmoser

Affiliations: 
Eidgenössische Technische Hochschule Zürich, Zürich, ZH, Switzerland 
Area:
stereochemistry
Website:
http://www.wolffund.org.il/index.php?dir=site&page=winners&cs=89&language=eng
Google:
"Albert J. Eschenmoser"
Bio:

http://www.nasonline.org/member-directory/members/46714.html
http://dx.doi.org/10.3929/ethz-a-000087828
http://www.scs.illinois.edu/~mainzv/Web_Genealogy/Info/eschenmoseraj.pdf
The 1986 Wolf Prize in Chemistry: Elias J. Corey for outstanding research on the synthesis of many highly complex natural products and the demonstration of novel ways of thinking about such syntheses.
and Albert Eschenmoser: for outstanding research on the synthesis, stereochemistry and reaction mechanisms for formation of natural products, specially Vitamin-B12.

Mean distance: 6.86
 
SNBCP

Parents

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Leopold Ružička grad student 1952 ETH Zürich
 (Zur säurekatalysierten Zyklisierung bei Mono- und Sesquiterpenverbindungen)
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Publications

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Yamada Y, Wehrli P, Miljkovic D, et al. (2015) Corrin Syntheses. Part VI: Corrin Synthesis via A→D Ring Closure. the Construction of A/D-Secocorrin Chromophore Systems by the 'Sulfide Contraction' Method and the Photochemical A/B-Secocorrin→Corrin Cycloisomerization Helvetica Chimica Acta. 98: 1921-2054
Blaser HU, Winnacker EL, Fischli A, et al. (2015) Corrin Syntheses. Part V: Preparation of Metal-Free Corrin Derivatives via A→B Ring Closure. Complexation of the Corrin Chromophore with Metal Ions, and Some Properties of the Ligands in Corrin Complexes Helvetica Chimica Acta. 98: 1845-1920
Bertele E, Scheffold R, Gschwend H, et al. (2015) Corrin Syntheses. Part IV: Synthesis of Corrin Complexes via A→B Ring Closure. Coupling of Hemicorrinoid A/D und B/C Components to Corrin by Imido-ester-Enamine Condensations | Corrin Syntheses. Part IV: Synthesis of Corrin Complexes via A→B Ring Closure. Coupling of Hemicorrinoid A/D und B/C Components to Corrin by Imido-ester-Enamine Condensations Helvetica Chimica Acta. 98: 1755-1844
Wagner T, Huynh HK, Krishnamurthy R, et al. (2010) ChemInform Abstract: Pentopyranosyl Oligonucleotide Systems. Part 12. The β-D-Xylopyranosyl-(4′→2′)-oligonucleotide System. Cheminform. 33: no-no
GROEBKE K, HUNZIKER J, FRASER W, et al. (2010) ChemInform Abstract: Why Pentose- and Not Hexose-Nucleic Acids? Purine-Purine Pairing in homo-DNA: Guanine, Isoguanine, 2,6-Diaminopurine, and Xanthine. Cheminform. 29: no-no
LEHMANN C, SCHWEIZER B, LEUMANN C, et al. (2010) ChemInform Abstract: Chemistry of α-Aminonitriles. Part 22. Regioselective Synthesis and Crystal Structure of Uroporphyrinogen (Type I) Octanitrile. Cheminform. 28: no-no
BOLLI M, MICURA R, ESCHENMOSER A. (2010) ChemInform Abstract: Pyranosyl-RNA: Chiroselective Self-Assembly of Base Sequences by Ligative Oligomerization of Tetranucleotide-2′,3′-cyclophosphates Cheminform. 28: no-no
PITSCH S, KRISHNAMURTHY R, BOLLI M, et al. (2010) ChemInform Abstract: Chemistry of α-Amino Nitriles. Part 16. Pyranosyl-RNA (“p-RNA”). Part 2. Base-Pairing Selectivity and Potential to Replicate. Cheminform. 27: no-no
OTTING G, BILLETER M, WUETHRICH K, et al. (2010) ChemInform Abstract: Why Pentose- and Not Hexose-Nucleic Acids? Part 4. Homo-DNA: 1H, 13C, 31P, and 15N NMR Spectroscopic Investigation of ddGlc(A-A-A-A-A-T-T-T- T-T) in Aqueous Solution. Cheminform. 25: no-no
HUNZIKER J, ROTH H, BOEHRINGER M, et al. (2010) ChemInform Abstract: Why Pentose- and Not Hexose-Nucleic Acids. Part 3. Oligo(2′,3′-dideoxy- β-D-glucopyranosyl)nucleotides. (“Homo-DNA”): Base-Pairing Properties. Cheminform. 24: no-no
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