Ligand lability offers a unique opportunity for access to metal–ligand cooperativity (MLC), helping to direct new organometallic and catalytic reactions. In recent years, ligand-assisted C–H bond activation and, more generally, proton migration have been of particular interest. This paper describes a detailed computational study into the mechanism, as well as the region and stereoselectivity, observed in a recently reported transformation where MLC in a 16-electron iridium(III) phosphoramidate complex plays a critical role in directing the activation of terminal alkynes toward the generation of novel five-membered (E)-vinyloxyirida(III)cycles. Five possible pathways for the formation of such products were investigated. Based on our findi...
A bis(phenolate)pyridine pincer ligand (henceforth abbreviated as ONO) has been employed to support ...
This thesis is organized around two themes: (1) C-H activation catalysis involving in situ generated...
The complex [IrH2(NCCH3)3(PiPr3)]BF4 (1) reacts with 2-vinylpyridine to form the hydride [IrH{NC5H4-...
Ligand lability offers a unique opportunity for access to metal–ligand cooperativity (MLC), helping ...
Ligand lability offers a unique opportunity for access to metal-ligand cooperativity (MLC), helping ...
Reactions of the phenyliridium(III) complex [Cp*IrCl(Ph)(PMe<sub>3</sub>)] with internal alkynes ...
The direct, site-selective alkylation of unactivated C(sp3)–H bonds in organic substrates is a long-...
The pincer ligand HN(CH2CH2PPh2)2 (1; PNHP) reacted with [{Ir(μ-X)(cod)}2] (X = Cl, OMe), affording ...
This work describes the chemical reactivity of a cationic (η<sup>5</sup>-C<sub>5</sub>Me<sub>5</sub>...
The electrophilic cationic complex [(η<sup>5</sup>-C<sub>5</sub>Me<sub>5</sub>)Ir(C<sup>∧</sup>P)]...
Recent experimental work shows that alkanes can be activated by Cp*Ir(PMe3)(CH3)(+) at room temperat...
Density functional theory calculations (DFT) have been performed on Rh(III)-catalyzed phosphoryl-di...
The pincer ligand HN(CH<sub>2</sub>CH<sub>2</sub>PPh<sub>2</sub>)<sub>2</sub> (<b>1</b>; PN<i>H</i>...
Alkanes, or saturated hydrocarbons, have long been zealously exploited for their energy content thro...
A pincer-ligated iridium complex, (PCP)Ir (PCP = κ<sup>3</sup>-C<sub>6</sub>H<sub>3</sub>-2,6-[CH<su...
A bis(phenolate)pyridine pincer ligand (henceforth abbreviated as ONO) has been employed to support ...
This thesis is organized around two themes: (1) C-H activation catalysis involving in situ generated...
The complex [IrH2(NCCH3)3(PiPr3)]BF4 (1) reacts with 2-vinylpyridine to form the hydride [IrH{NC5H4-...
Ligand lability offers a unique opportunity for access to metal–ligand cooperativity (MLC), helping ...
Ligand lability offers a unique opportunity for access to metal-ligand cooperativity (MLC), helping ...
Reactions of the phenyliridium(III) complex [Cp*IrCl(Ph)(PMe<sub>3</sub>)] with internal alkynes ...
The direct, site-selective alkylation of unactivated C(sp3)–H bonds in organic substrates is a long-...
The pincer ligand HN(CH2CH2PPh2)2 (1; PNHP) reacted with [{Ir(μ-X)(cod)}2] (X = Cl, OMe), affording ...
This work describes the chemical reactivity of a cationic (η<sup>5</sup>-C<sub>5</sub>Me<sub>5</sub>...
The electrophilic cationic complex [(η<sup>5</sup>-C<sub>5</sub>Me<sub>5</sub>)Ir(C<sup>∧</sup>P)]...
Recent experimental work shows that alkanes can be activated by Cp*Ir(PMe3)(CH3)(+) at room temperat...
Density functional theory calculations (DFT) have been performed on Rh(III)-catalyzed phosphoryl-di...
The pincer ligand HN(CH<sub>2</sub>CH<sub>2</sub>PPh<sub>2</sub>)<sub>2</sub> (<b>1</b>; PN<i>H</i>...
Alkanes, or saturated hydrocarbons, have long been zealously exploited for their energy content thro...
A pincer-ligated iridium complex, (PCP)Ir (PCP = κ<sup>3</sup>-C<sub>6</sub>H<sub>3</sub>-2,6-[CH<su...
A bis(phenolate)pyridine pincer ligand (henceforth abbreviated as ONO) has been employed to support ...
This thesis is organized around two themes: (1) C-H activation catalysis involving in situ generated...
The complex [IrH2(NCCH3)3(PiPr3)]BF4 (1) reacts with 2-vinylpyridine to form the hydride [IrH{NC5H4-...