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1 Helena Kang -- 204 2026-09-23 04:09:32

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Kang, H. Base Catalysis. Encyclopedia. Available online: https://encyclopedia.pub/entry/60291 (accessed on 03 October 2026).
Kang H. Base Catalysis. Encyclopedia. Available at: https://encyclopedia.pub/entry/60291. Accessed October 03, 2026.
Kang, Helena. "Base Catalysis" Encyclopedia, https://encyclopedia.pub/entry/60291 (accessed October 03, 2026).
Kang, H. (2026, September 23). Base Catalysis. In Encyclopedia. https://encyclopedia.pub/entry/60291
Kang, Helena. "Base Catalysis." Encyclopedia. Web. 23 September, 2026.
Base Catalysis
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Acceleration of a chemical transformation by a species that accepts a proton or donates an electron pair to a substrate defines base catalysis. In general base catalysis a proton is partially transferred in the rate-determining step and the catalyst is regenerated; in specific base catalysis the active nucleophile is the lyate ion formed in a prior equilibrium. Lewis base catalysis is the complementary closed-shell process in which the catalyst binds a Lewis-acidic site (a carbonyl carbon, a silicon center, or a π-acidic metal) and thereby activates the substrate without net proton transfer [1]. Dual catalytic systems may combine a Lewis base with a photoredox cycle so that the two catalysts jointly generate the nucleophilic and electrophilic partners of a C–C bond-forming step [2]. In ribonucleic acid catalysis, general acid–base catalysis likewise proceeds by concerted proton transfer at the phosphodiester, underscoring that the defining elementary act is proton shuttling rather than metal redox chemistry [3]. The concept excludes stoichiometric use of a strong base as a reagent: the base must be turned over. It is complementary to acid catalysis, which activates by proton donation or Lewis-acid coordination [1].

base catalysis Lewis base catalysis general base catalysis proton transfer

References

  1. Scott E. Denmark; Gregory L. Beutner; Lewis Base Catalysis in Organic Synthesis. Angew. Chem. Int. Ed. 2008, 47, 1560-1638. [CrossRef]
  2. Magnus Rueping; Carlos Vila; René M. Koenigs; Konstantin Poscharny; David C. Fabry; Dual catalysis: combining photoredox and Lewis base catalysis for direct Mannich reactions. Chem. Commun. 2010, 47, 2360-2362. [CrossRef]
  3. Philip C. Bevilacqua; Mechanistic Considerations for General Acid−Base Catalysis by RNA: Revisiting the Mechanism of the Hairpin Ribozyme. Biochem. 2003, 42, 2259-2265. [CrossRef]
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Subjects: Chemistry, Organic
Contributor MDPI registered users' name will be linked to their SciProfiles pages. To register with us, please refer to https://encyclopedia.pub/register : Helena Kang
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Update Date: 23 Sep 2026
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