21 results on '"Osorio, Edison"'
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2. Potential use of medicinal plants from Argentinean highland as agent anti‐photoaging
3. Alkaloids of Amaryllidaceae as Inhibitors of Cholinesterases (AChEs and BChEs): An Integrated Bioguided Study
4. Frontispiece: Stable NCNgNSi (Ng=Kr, Xe, Rn) Compounds with Covalently Bound C-Ng-N Unit: Possible Isomerization of NCNSi through the Release of the Noble Gas Atom
5. Boron Nanowheels with Axles Containing Noble Gas Atoms: Viable Noble Gas Bound M©B10−Clusters (M=Nb, Ta)
6. Stable NCNgNSi (Ng=Kr, Xe, Rn) Compounds with Covalently Bound C-Ng-N Unit: Possible Isomerization of NCNSi through the Release of the Noble Gas Atom
7. Activation and diffusion of ammonia borane hydrogen on gold tetramers
8. Frontispiece: Ligand-Supported E3 Clusters (E=Si-Sn)
9. Ligand-Supported E3Clusters (E=Si-Sn)
10. Flavonoids in Transgenic Alzheimer's Disease Mouse Models
11. Understanding the Central Location of a Hexagonal Hole in a B36Cluster
12. ChemInform Abstract: Structure and Bonding of IrB12‐: Converting a Rigid Boron B12 Platelet to a Wankel Motor.
13. Structural evolution of small gold clusters doped by one and two boron atoms
14. ChemInform Abstract: B182-: A Quasi-Planar Bowl Member of the Wankel Motor Family.
15. Influence of cultivar and ripening time on bioactive compounds and antioxidant properties in Cape gooseberry (Physalis peruvianaL.)
16. ChemInform Abstract: Exploring the Potential Energy Surface of E2P4Clusters (E: Group 13 Element): The Quest for Inverse Carbon-Free Sandwiches.
17. Cover Picture: Exploring the Potential Energy Surface of E2P4 Clusters (E=Group 13 Element): The Quest for Inverse Carbon‐Free Sandwiches (Chem. Eur. J. 16/2014)
18. Exploring the Potential Energy Surface of E2P4Clusters (E=Group 13 Element): The Quest for Inverse Carbon-Free Sandwiches
19. Isomerization Energy Decomposition Analysis for Highly Ionic Systems: Case Study of Starlike E5Li7+ Clusters
20. Analysis of Why Boron Avoids sp2 Hybridization and Classical Structures in the BnHn+2 Series
21. Alkaloids of Amaryllidaceae as Inhibitors of Cholinesterases (AChEs and BChEs): An Integrated Bioguided Study.
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