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  2. Haloalkane - Wikipedia

    en.wikipedia.org/wiki/Haloalkane

    For more information, see Halomethane. Haloalkane or alkyl halides are the compounds which have the general formula "RX" where R is an alkyl or substituted alkyl group and X is a halogen (F, Cl, Br, I). Haloalkanes have been known for centuries. Chloroethane was produced in the 15th century.

  3. Bromocyclopentane - Wikipedia

    en.wikipedia.org/wiki/Bromocyclopentane

    Bromocyclopentane. Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa). Bromocyclopentane is a derivative of cyclopentane, an alkyl halide with the chemical formula C5H9Br. It is a colorless to light yellow liquid at standard temperature and pressure.

  4. SN1 reaction - Wikipedia

    en.wikipedia.org/wiki/SN1_reaction

    Instead, the rate equation may be more accurately described using steady-state kinetics. The reaction involves a carbocation intermediate and is commonly seen in reactions of secondary or tertiary alkyl halides under strongly basic conditions or, under strongly acidic conditions, with secondary or tertiary alcohols.

  5. Finkelstein reaction - Wikipedia

    en.wikipedia.org/wiki/Finkelstein_reaction

    Secondary halides are far less reactive. Vinyl, aryl and tertiary alkyl halides are unreactive; as a result, the reaction of NaI in acetone can be used as a qualitative test to determine which of the aforementioned classes an unknown alkyl halide belongs to, with the exception of alkyl iodides, as they yield the same product upon substitution.

  6. 2-Bromobutane - Wikipedia

    en.wikipedia.org/wiki/2-Bromobutane

    2-Bromobutane is an isomer of 1-bromobutane. Both compounds share the molecular formula C 4 H 9 Br. 2-Bromobutane is also known as sec -butyl bromide or methylethylbromomethane. Because it contains bromine, a halogen, it is part of a larger class of compounds known as alkyl halides. It is a colorless liquid with a pleasant odor.

  7. SN2 reaction - Wikipedia

    en.wikipedia.org/wiki/SN2_reaction

    Bimolecular nucleophilic substitution (SN2) is a type of reaction mechanism that is common in organic chemistry. In the S N 2 reaction, a strong nucleophile forms a new bond to an sp 3 -hybridised carbon atom via a backside attack, all while the leaving group detaches from the reaction center in a concerted (i.e. simultaneous) fashion.

  8. Nucleophilic substitution - Wikipedia

    en.wikipedia.org/wiki/Nucleophilic_substitution

    A graph showing the relative reactivities of the different alkyl halides towards S N 1 and S N 2 reactions (also see Table 1). In 1935, Edward D. Hughes and Sir Christopher Ingold studied nucleophilic substitution reactions of alkyl halides and related compounds. They proposed that there were two main mechanisms at work, both of them competing with each other. The two main mechanisms were the ...

  9. Chloro (pyridine)cobaloxime - Wikipedia

    en.wikipedia.org/wiki/Chloro(pyridine)cobaloxime

    Chloro (pyridine)cobaloxime (III) is first reduced to Chloro (pyridine)cobaloxime (I) by sodium borohydride in alkaline solution, then an alkyl halide is added into the reaction mixture, and the desired Co-C bond is formed via a S N 2 reaction. This method can be used to produce cobaloximes containing a primary or a secondary alkyl substituent.