44 results on '"Kawasaki, Tsuneomi"'
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2. Utilization of a Crown Ether/Amine‐Type Rotaxane as a Probe for the Versatile Detection of Anions and Acids by Thin‐Layer Chromatography
3. Recognition Behavior of a Porphyrin Heterodimer Self-Assembled through an Amidinium-Carboxylate Salt Bridge
4. Cover Feature: Highly Stereoselective Strecker Synthesis Induced by a Slight Modification of Benzhydrylamine from Achiral to Chiral (Chem. Eur. J. 6/2018)
5. Highly Stereoselective Strecker Synthesis Induced by a Slight Modification of Benzhydrylamine from Achiral to Chiral
6. Four-State Molecular Shuttling of [2]Rotaxanes in Response to Acid/Base and Alkali-Metal Cation Stimuli
7. Asymmetric Strecker Reaction Arising from the Molecular Orientation of an Achiral Imine at the Single-Crystal Face: Enantioenriched l - and d -Amino Acids
8. Achiral Inorganic Gypsum Acts as an Origin of Chirality through Its Enantiotopic Surface in Conjunction with Asymmetric Autocatalysis
9. Point‐to‐Point Ultra‐Remote Asymmetric Control with Flexible Linker
10. Cover Picture: Asymmetric Induction by a Nitrogen 14 N/15 N Isotopomer in Conjunction with Asymmetric Autocatalysis (Angew. Chem. Int. Ed. 49/2016)
11. Titelbild: Asymmetric Induction by a Nitrogen 14 N/15 N Isotopomer in Conjunction with Asymmetric Autocatalysis (Angew. Chem. 49/2016)
12. Asymmetric Induction by a Nitrogen14N/15N Isotopomer in Conjunction with Asymmetric Autocatalysis
13. Five-State Molecular Shuttling of a Pair of [2]Rotaxanes: Distinct Outputs in Response to Acid and Base Stimuli
14. Crystal Structure of the Isopropylzinc Alkoxide of Pyrimidyl Alkanol: Mechanistic Insights for Asymmetric Autocatalysis with Amplification of Enantiomeric Excess
15. ChemInform Abstract: Spontaneous Formation and Amplification of an Enantioenriched α-Amino Nitrile: A Chiral Precursor for Strecker Amino Acid Synthesis.
16. ChemInform Abstract: Asymmetric Autocatalysis of Pyrimidyl Alkanol and Its Application to the Study on the Origin of Homochirality
17. Self-Replication and Amplification of Enantiomeric Excess of Chiral Multifunctionalized Large Molecules by Asymmetric Autocatalysis
18. ChemInform Abstract: The Origins of Homochirality Examined by Using Asymmetric Autocatalysis
19. The Origins of Homochirality Examined by Using Asymmetric Autocatalysis
20. ChemInform Abstract: Asymmetric Autocatalysis of Pyrimidyl Alkanol
21. Asymmetric Autocatalysis Induced by Cinnabar: Observation of the Enantioselective Adsorption of a 5-Pyrimidyl Alkanol on the Crystal Surface
22. ChemInform Abstract: Asymmetric Autocatalysis Triggered by Chiral Crystals Formed from Achiral Compounds and Chiral Isotopomers
23. Asymmetric Autocatalysis Triggered by Chiral Crystals Formed from Achiral Compounds and Chiral Isotopomers
24. ChemInform Abstract: Asymmetric Induction Arising from Enantiomerically Enriched Carbon-13 Isotopomers and Highly Sensitive Chiral Discrimination by Asymmetric Autocatalysis
25. ChemInform Abstract: A Reversal Phenomenon of Enantioface Selectivity by the Cooperative Operation of Two Chiral Catalyst.
26. ChemInform Abstract: Enantioselective Synthesis Induced by Compounds with Chirality Arising from Partially Deuterated Methyl Groups in Conjunction with Asymmetric Autocatalysis.
27. Asymmetric Autocatalysis: Triggered by Chiral Isotopomer Arising from Oxygen Isotope Substitution
28. Enantioselective CC Bond Formation as a Result of the Oriented Prochirality of an Achiral Aldehyde at the Single-Crystal Face upon Treatment with a Dialkyl Zinc Vapor
29. ChemInform Abstract: Asymmetric Amplification and Autocatalysis
30. ChemInform Abstract: Asymmetric Autocatalysis. Automultiplication of Chiral Molecules
31. ChemInform Abstract: Amplification of Chirality as a Pathway to Biological Homochirality
32. ChemInform Abstract: Asymmetric Autocatalysis Induced by Meteoritic Amino Acids with Hydrogen Isotope Chirality.
33. Achiral Nucleobase Cytosine Acts as an Origin of Homochirality of Biomolecules in Conjunction with Asymmetric Autocatalysis
34. Achiral Nucleobase Cytosine Acts as an Origin of Homochirality of Biomolecules in Conjunction with Asymmetric Autocatalysis
35. Asymmetric Autocatalysis Induced by Octahedral Tris(acetylacetonato)chromium(III) Complex as a Homogeneous Chiral Initiator.
36. Enantioselective Synthesis Mediated by Chiral Crystal of Achiral Hippuric Acid in Conjunction with Asymmetric Autocatalysis.
37. Asymmetric Autocatalysis with Amplification of Chirality and Origin of Chiral Homogeneity of Biomolecules
38. Spontaneous absolute asymmetric synthesis in the presence of achiral silica gel in conjunction with asymmetric autocatalysis
39. Discovery of asymmetric autocatalysis with amplification of chirality and its implication in chiral homogeneity of biomolecules
40. Asymmetric Amplification Using Chiral Cocrystals Formed from Achiral Organic Molecules by Asymmetric Autocatalysis
41. Asymmetric Autocatalysis Initiated by Chiral Ephedrine Immobilized on Silica Gel in a Diisopropylzinc Addition to Pyrimidine-5-carbaldehyde.
42. Enantioselective Synthesis of Substituted 3‐Quinolyl Alkanols and Their Application to Asymmetric Autocatalysis.
43. ChemInform Abstract: Total Synthesis of (.+‐.)‐Cocculolidine.
44. Achiral 2-pyridone and 4-aminopyridine act as chiral inducers of asymmetric autocatalysis with amplification of enantiomeric excess via the formation of chiral crystals.
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