Oxidation numbers function as bookkeeping devices for electron distribution
Oxidation numbers serve as formal electron-counting and bookkeeping tools in chemistry, though they may occasionally diverge from actual physical electron distributions in specific complexes.
The retrieved papers consistently treat oxidation numbers as accounting or electron-counting frameworks, supporting the premise that they function as bookkeeping devices for electron distribution.
de Zwart FJ, Reus B, Laporte AAH, Sinha V, de Bruin B. Metrical Oxidation States of 1,4-Diazadiene-Derived Ligands.. 2021. https://doi.org/10.1021/acs.inorgchem.0c03685
Discusses how formal oxidation states function as foundational electron-counting bookkeeping tools for understanding metal-ligand systems.
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Nagelski AL, Fataftah MS, MacMillan SN, MacLeod KC, McWilliams SF, Mercado BQ, Lancaster KM, Holland PL. Bridging Carbonyl and Carbyne Complexes of Weak-Field Iron: Electronic Structure and Iron-Carbon Bonding.. 2024. https://doi.org/10.1021/jacs.4c08358
Demonstrates that formal oxidation numbers serve as bookkeeping devices for electron distribution, though sometimes diverging from actual physical electron density changes.
Pong Kau Yuen, C. M. Lau. Using the Carbon-Atom Method to Determine Mean Oxidation Number of Organic Carbons. 2023. https://doi.org/10.5539/ijc.v15n2p13
Highlights oxidation numbers as an essential electron-counting and bookkeeping concept used for balancing equations and tracking organic redox transformations.
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