Organic chemistry is a branch of chemistry that studies the structure, properties and reactions of organic compounds, which contain carbon in covalent bonding. Study of structure determines their chemical composition and formula. 5.12 is an introduction to organic chemistry, focusing primarily on the basic principles to understand the structure and reactivity of organic molecules. Emphasis is on substitution and elimination reactions and chemistry of the carbonyl group. The course also provides an introduction to the chemistry. Organic chemistry at NYU is grounded in an understanding of chemical bonding, stereochemistry, the relationship between structure and reactivity, and the nature of intermolecular interactions that can affect structure.
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General Principles
Other Topics
Organic Chemistry Functional Groups
Concerning Practice Problems
The practice problems provided as part of this text are chiefly interactive, and should provide a useful assessment of the reader's understanding at various stages in the development of the subject. Some of these problems make use of a Molecular Editor drawing application created by Peter.Ertl. To practice using this editor Click Here.
Since problem solving is essential to achieving an effective mastery of the subject, it is recommended that many more problems be worked. Most organic chemistry textbooks contain a broad assortment of suitable problems, and paperback collections of practice problems are also available. In addition, a large collection of multiple choice problems may be viewed Here.
The following button will activate a collection of problems concerning the reactivity of common functional groups.
Organic Chemistry
The following web-sites provide nice collections of problems and answers:
Towson University-reaction quizzes and summaries
Ohio State University-electronic flashcards
University of Wisconsin-concept questions
UCLA-helpful advice
Notre Dame-spectroscopy problems
For a useful collection of study materials, including links to other sites, visit the Organic chemistry tool-kit. Prepared by Bob Hanson, St. Olaf College
The Organic Chemistry Portal offers an overview of recent topics, interesting reactions, and information on important chemicals for organic chemists. Archive: 2021, 2020, 2019, 2018, 2017, 2016, 2015, 2014, 2013, 2012, More C-O Ring Construction: Karrinkinolide (Hosokawa), Sanctis B (Liu/Tan), Caesalpinnone A (Zheng), Cochlearol A (Ishigami), Alstoscholarisine E (Martin), Aranorosinol A (Xu) C-O Ring Construction: The Rizzacasa Synthesis of Trachyspic Acid 19-n-Butyl Ester The Chen/Yang Synthesis of Pre-schisanartanin C Other Methods for Carbocyclic Construction: Aspidodispermine (Heretsch), Lepadiformine A (Tokuyama), Farnesin (Gao), Ganocin B (Zhao), Dankasterone B (Heretsch), Canataxpropellane (Gaich) Organocatalyzed Carbocyclic Ring Construction: The Appayee Synthesis of 9β-11-Hydroxyhexahydrocannabinol | |||
Organic ReactionsFind the most important name reactions in organic chemistry, stability data for the most frequently used protective groups, protection and deprotection methods; browse synthetic transformations | Abstracts of articles in the field of organic synthesis, published in the most highly regarded organic chemistry journals | ChemicalsA searchable index of more than 1 million chemicals from suppliers worldwide, basic information on widely-used chemical reagents in organic synthesis such as oxidizing and reducing agents. | Molecular Properties Estimation |
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Organic Chemistry - A DefinitionOrganic chemistry focuses on molecules mainly composed of carbon and hydrogen, along with a handful of other elements - such as oxygen, nitrogen, silicon, sulfur, and phosphorus. Organic chemistry deals with synthetic methods, reaction mechanisms and kinetics, and uses analytical methods for reaction control and purification such as chromatography (TLC, GC, HPLC), and structure confirmation such as NMR and IR, but also structure determination such as NMR and X-ray crystallography. New fields of organic chemistry for example include organometallic chemistry, which is the study of carbon-based compounds that contain metals, and bioorganic chemistry, which combines organic chemistry and biochemistry. Methods of organic chemistry are used in medicinal chemistry, natural product chemistry, and materials science. In the industry, organic chemists work in discovery chemistry (making new molecules) and process optimization (finding better synthetic methods for large scale production). |