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  1. Stephen James Lippard (* 12. Oktober 1940 in Pittsburgh, Pennsylvania) ist ein US-amerikanischer Chemiker . Inhaltsverzeichnis. 1 Leben und Wirken. 2 Auszeichnungen (Auswahl) 3 Mitgliedschaften. 4 Weblinks. 5 Einzelnachweise. Leben und Wirken.

  2. Stephen James Lippard (born October 12, 1940) is the Arthur Amos Noyes Emeritus Professor of Chemistry at the Massachusetts Institute of Technology. He is considered one of the founders of bioinorganic chemistry, studying the interactions of nonliving substances such as metals with biological systems.

  3. Stephen J. Lippard is the Arthur Amos Noyes Professor Emeritus of Chemistry at the Massachusetts Institute of Technology. His research spans the fields of biological and inorganic chemistry. Lippard studies biological interactions involving metal ions, focusing on reactions and physical and structural properties of metal complexes. Such ...

  4. About Stephen J. Lippard. Research. Metal-based anticancer agents. Metalloneurochemistry. Bacterial Multicomponent Monooxygenases, Diiron Modeling. Publications. Independent publications. Books. Patents. Lab members. Current. Former. News. Resources. Home. Welcome to the Lippard Lab.

  5. Name: Born: Stephen J. Lippard 12 October 1940. Main research interests: Inorganic chemistry, bioinorganic chemistry, and neurochemistry. Synthesis, reactivity, and structure determination of transition metal complexes; mechanism of action of platinum anticancer drugs; chemistry and catalysis at diiron centers;

  6. One prominent example is the field of bioinorganic chemistry. As a pioneer of the field, Stephen Lippard has made major contributions in the study and development of anticancer drugs, enzymatic function, and protein characterization and synthesis.

  7. 1. Apr. 2014 · Stephen Lippard, the Arthur Amos Noyes professor in the Department of Chemistry, was MIT’s James R. Killian Jr. Faculty Achievement Award winner for 2013–2014. Professor Lippard has spent his career studying the role of inorganic molecules, especially metal ions and their complexes, in critical processes of biological systems.