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organic compound
(redirected from Organic molecules)

   Also found in: Medical, Wikipedia, Hutchinson 0.06 sec.

organic compound

Substance whose molecules contain one or more (often many more) carbon atoms (excluding carbonates, cyanides, carbides, and a few others; see inorganic compound). Until 1828 (see urea), scientists believed that organic compounds could be formed only by life processes (hence the name). Since carbon has a far greater tendency to form molecular chains and rings than do other elements, its compounds are vastly more numerous (many millions have been described) than all others known. Living organisms consist mostly of water and organic compounds: proteins, carbohydrates, fats, nucleic acids, hormones, vitamins, and a host of others. Natural and synthetic fibres and most fuels, drugs, and plastics are organic. Hydrocarbons contain only carbon and hydrogen; organic compounds with other functional groups include carboxylic acids, alcohols, aldehydes, ketones, phenols, ethers, esters, and other, more complex, molecules, including heterocyclic compounds, isoprenoids, and amino acids.


organic compound

In physics, a material that contains carbon and hydrogen and usually other elements such as nitrogen, sulfur and oxygen. Organic compounds can be found in nature or they can be synthesized in the laboratory. An organic substance is not the same as a "natural" substance. A natural material means that it is essentially the same as it was found in nature, but "organic" means that it is carbon based.

A printed circuit board is an example of an organic substrate because the laminate material is made of glass fibers in an epoxy, and epoxies are carbon based (see FR4). See organic chemistry.



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Using organic chemistry to control the structure of the organic molecules in turn provides a handle for controlling the structure and the properties of the magnet you make," Hicks says.
Direct attachment of organic molecules to the silicon surface is of increasing importance for emerging molecular electronics applications as devices incorporating molecules chemically bonded to silicon are amenable to integration with existing Si processing techniques.
Through Graffinity's RAISE (Rapid Affinity Informed Structure Evolution) process, small organic molecules are further developed in an evolutionary way directed by their interactions with proteins, both targets and non-targets, to deliver high quality, specific lead structures
 
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