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  1. 14. Mai 2020 · Dr. Stephen Lippard illustrates what marks exceptional scientists and what drives extraordinary discoveries in science.Dr. Lippard is the Arthur Amos Noyes P...

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  2. Biosketch. Stephen J. Lippard is the Emeritus Arthur Amos Noyes Professor of Chemistry at the Massachusetts Institute of Technology. He was born in Pittsburgh, PA and studied at Haverford College (B.A., Chemistry) and MIT (Ph.D., Inorganic Chemistry). After a postdoctoral year at MIT during 1965-66, he joined the faculty of Columbia University ...

  3. Stephen J. Lippard mainly investigates Stereochemistry, Crystallography, DNA, Medicinal chemistry and Cisplatin. The concepts of his Stereochemistry study are interwoven with issues in Platinum, Molecule, Ligand and Crystal structure. His Crystal structure research integrates issues from X-ray crystallography and Inorganic compound.

  4. 4. Mai 2015 · On April 23, a symposium titled "Metals for Life" honored Stephen J. Lippard, the Arthur Amos Noyes Professor of Chemistry at MIT, who is the 2015 recipient of the Benjamin Franklin Medal in Chemistry. The event, sponsored by the Franklin Institute and the University of Delaware, was held at the University of Delaware. Lippard was cited for his pioneering research on the role of metal atoms in ...

  5. Stephen J. Lippard. 2004. National Medal of Science. Chemistry. For pioneering research in bioinorganic chemistry, which enriched our understanding of how metal compounds interact with DNA, provided important synthetic models for the active sites of metalloproteins, and elucidated key structural and mechanistic features of methane monooxygenase.

  6. 16. Mai 2013 · Stephen J. Lippard, who is widely acknowledged as one of the founders of the field of bioinorganic chemistry, is this year’s recipient of MIT’s James R. Killian Jr. Faculty Achievement Award. Established in 1971 to honor MIT’s 10th president, the Killian Award recognizes extraordinary professional achievements by an MIT faculty member.

  7. Zastrow ML, Huang Z, Lippard SJ. (2020) HaloTag-based hybrid targetable and ratiometric sensors for intracellular zinc. Acs Chemical Biology: Almaqwashi AA, Zhou W, Naufer MN, et al. (2019) DNA intercalation facilitates efficient DNA-targeted covalent binding of phenanthriplatin. Journal of the American Chemical Society: Steinhuebel DP, Lippard SJ.