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Course offerings - Temple University Department of Chemistry

http://chem.cst.temple.edu/course-offerings.html

CHEM 8201. The Chemistry of Natural Products. 3 Credit Hours. CHEM 8205. Heterocyclic Chemistry. 3 Credit Hours. CHEM 8303. Modern Methods in Experimental Chem. 3 Credit Hours. CHEM 8200/8210. Special Topics in Organic Chemistry. 3 Credit Hours. Including: Chemical Biology, Silicon in Organic Synthesis, The Chemistry of the Alkaloids,

Organic - Temple University Department of Chemistry

http://chem.cst.temple.edu/organic.html

Organic, Inorganic, Biological. Developing new catalytic platforms to tackle challenges in organic synthesis and biology with a large focus on transition metal catalysis. Chris Schafmeister. Organic. Development of macromolecules capable of acting as catalysts, new therapies and channels. Rongsheng (Ross) Wang. Biological, Organic.

Pharmacy PharmD < Temple University

https://bulletin.temple.edu/graduate/scd/pharmacy/pharmacy-pharmd/

The Temple University School of Pharmacy's PharmD program offers the chance to pursue excellence and opportunity in education, scholarship, research and practice. Time Limit for Program Completion: 4 years. Campus Location: Health Sciences Center. Full-Time/Part-Time Status: The program may be completed on a full-time basis. Master's Degree in ...

CONTENTdm - digital.library.temple.edu

https://digital.library.temple.edu/digital/collection/p245801coll10/id/577805/

Approximately two-thirds of all antibiotics are derived from natural products, so the structural modification of natural products-derived antibiotics by either semi- or total synthesis is a highly successful strategy for discovering novel drugs to address bacterial resistance. My Ph.D. research project comprises of analog development for three ...

CONTENTdm - digital.library.temple.edu

https://digital.library.temple.edu/digital/collection/p245801coll10/id/353465/

The strategy for construction of cyclooctanoid natural products is part of a long standing program to utilize the powerful photochemical properties of 2 pyridone. A novel approach for rapid access to a structurally diverse array of amino-ketone scaffolds employing a Kulinkovich-de Meijere reaction of inexpensive lactam-olefin building blocks ...

Semi-Synthesis of Melodinine, Taberyunine, and Melosuavine Bis-Indole ...

https://scholarshare.temple.edu/handle/20.500.12613/7731

Abstract The first semi-synthesis of (-)-melodinine K was completed from the monoterpene indole alkaloid (-)-tabersonine through regioselective enzymatic hydroxylation and Polonovski-Potier coupling.

In memoriam: Dr. Rodrigo Andrade - College of Science and Technology

https://cst.temple.edu/news/2021/07/memoriam-dr-rodrigo-andrade

7/30/21. Professor Rodrigo (Rod) B. Andrade of the Department of Chemistry passed away May 24. Rod was a consummate scholar and teacher to graduate and undergraduate students since he arrived at Temple University in 2006 as an assistant professor. Due to his profound contributions to the area of organic synthesis methods, he earned tenure and ...

CONTENTdm - digital.library.temple.edu

https://digital.library.temple.edu/digital/collection/p245801coll10/id/590338/

Essential oils are natural products used to flavor food and beverages. With the increase in nutrition conscious consumers, manufacturers of food additives and food products are faced with the challenge of making healthy alternatives. In particular, food products going to market with label claims stating reductions in sugar and salt, organic ...

That time of the month: The harm of menstrual inequity and not talking ...

https://news.temple.edu/news/2022-01-26/time-month-harm-menstrual-inequity-and-not-talking-openly-about-your-period

Menstrual inequity—the unequal access to menstrual products, education and reproductive care—often goes unaddressed because of this reluctance, as well as a lack of awareness and education about the problem. ... that the number one reason girls miss school is because of their period and that this natural part of health is going widely ...

Catalysis - Temple University Department of Chemistry

http://chem.cst.temple.edu/catalysis.html

Catalysis. Inorganic, Organic. Hypervalent iodine chemistry, approaches to medium-sized ring systems, C-H activation, synthesis of bioactive natural products. Synthetic and mechanistic inorganic and bioinorganic chemistry and crystallography: multi-metal molecular clusters and solid-state systems of fundamental chemical and biological interest ...