13 C carbene nuclear magnetic resonance chemical shift analysis confirms Ce IV C double bonding in cerium( iv )–diphosphonioalkylidene complexes

Stephen T. Liddle, Daniel Lee, John A. Seed, C. Baker, Ralph W. Adams
2023-12-06

SCID:  54.1/yg5cattj
C chemical shift tensor spans of any alkylidene complex to date (1, 801 ppm; 2, 810 ppm). In contrast, the phosphonium-substituent shielding contributions are much smaller than the Ce[double bond, length as m-dash]C σ- and π-bond components. This study confirms significant Ce 4f-orbital contributions to the Ce[double bond, length as m-dash]C bonding, provides further support for a previously proposed inverse-trans-influence in 2, and reveals variance in the 4f spin-orbit contributions that relate to the alkylidene hybridisation. This work thus confirms the metal-carbon double bond credentials of f-element-diphosphonioalkylidenes, providing quantified benchmarks for understanding diphosphonioalkylidene bonding generally.
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2023-12-06
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Stephen T. Liddle
Daniel Lee
John A. Seed
C. Baker
Ralph W. Adams
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