A 100,000-Fold Increase in C-H Bond Acidity Gives Palladium a Key Advantage in C(sp<sup>3</sup>)-H Activation Compared to Nickel.
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ABSTRACT: Carbon-hydrogen bond activation is a pillar of synthetic chemistry. While it is generally accepted that Pd is more facile than Ni in C-H activation catalysis, there are no experimental platforms available to directly compare the magnitude of C-H bond weakening between Ni and Pd prior to bond scission. This work presents the first direct measurements of C(sp3)-H bond acidity (pKa) and bond dissociation free energy (BDFE) for a species containing a ligated alkane-palladium interaction (R2CH2···Pd), also known as an agostic interaction. Through standard-state equilibrium measurements and advanced computational modeling, we show that Pd acidifies C(sp3)-H bonds 100,000 times more than Ni (5 pKa units), indicating t
SUBMITTER: Lin L
PROVIDER: S-EPMC12464984 | biostudies-literature | 2025 Sep
REPOSITORIES: biostudies-literature
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