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  2. Chirality - Wikipedia

    en.wikipedia.org/wiki/Chirality

    Chirality (/ k aɪ ˈ r æ l ɪ t i /) is a property of asymmetry important in several branches of science. The word chirality is derived from the Greek χείρ (kheir), "hand", a familiar chiral object. An object or a system is chiral if it is distinguishable from its mirror image; that is, it cannot be superposed (not to be confused with ...

  3. Chirality (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Chirality_(chemistry)

    Chirality is a symmetry property, not a property of any part of the periodic table. Thus many inorganic materials, molecules, and ions are chiral. Quartz is an example from the mineral kingdom. Such noncentric materials are of interest for applications in nonlinear optics.

  4. Absolute configuration - Wikipedia

    en.wikipedia.org/wiki/Absolute_configuration

    [4] [5] The configuration of other chiral compounds was then related to that of (+)-glyceraldehyde by sequences of chemical reactions. For example, oxidation of (+)-glyceraldehyde (1) with mercury oxide gives (−)-glyceric acid (2), a reaction that does not alter the stereocenter. Thus the absolute configuration of (−)-glyceric acid must be ...

  5. Chiral analysis - Wikipedia

    en.wikipedia.org/wiki/Chiral_analysis

    For chiral examination there is a need to have the right chiral environment. This could be provided as a plane polarized light, an additional chiral compound or by exploiting the inborn chirality of nature. The chiral analytical strategies incorporate physical, biological, and separation science techniques.

  6. Chiral drugs - Wikipedia

    en.wikipedia.org/wiki/Chiral_drugs

    Louis Pasteur - pioneering stereochemist. Chirality can be traced back to 1812, when physicist Jean-Baptiste Biot found out about a phenomenon called "optical activity." [10] Louis Pasteur, a famous student of Biot's, made a series of observations that led him to suggest that the optical activity of some substances is caused by their molecular asymmetry, which makes nonsuperimposable mirror ...

  7. Chiral media - Wikipedia

    en.wikipedia.org/wiki/Chiral_media

    Chirality with hands and two enantiomers of a generic amino acid The direction of current flow and induced magnetic flux follow a "handness" relationship. The term chiral / ˈ k aɪ r əl / describes an object, especially a molecule, which has or produces a non-superposable mirror image of itself.

  8. Chiral phosphoric acid - Wikipedia

    en.wikipedia.org/wiki/Chiral_phosphoric_acid

    Common examples of Ar include Ar = 4-NO 2-C 6 H 4, 9-anthracenyl, and 2, 4, 6-iPr 3-C 6 H 2 (commonly known as TRIP [1]). In organic chemistry, chiral phosphoric acids are esters of phosphoric acid H 3 PO 4 that have chiral backbones. Well known examples include cyclic diesters derived from the BINOL and TADDOL motifs.

  9. Bromochlorofluoromethane - Wikipedia

    en.wikipedia.org/wiki/Bromochlorofluoromethane

    Bromochlorofluoromethane or fluorochlorobromomethane, is a chemical compound and trihalomethane derivative with the chemical formula C H Br Cl F.As one of the simplest possible stable chiral compounds, it is useful for fundamental research into this area of chemistry. [1]