New Homoleptic Rare Earth 3,5‐Diphenylpyrazolates and 3,5‐Di‐ tert ‐butylpyrazolates and a Noteworthy Structural Discontinuity
Author:
Affiliation:
1. College of Science & Engineering James Cook University 4811 Townsville QLD Australia
2. School of Chemistry Monash University 3800 Victoria Australia
Funder
Australian Research Council
Publisher
Wiley
Subject
Inorganic Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/zaac.201900015
Reference20 articles.
1. Stable homoleptic metal alkyls
2. The Utilization of Solid State Chemistry Reaction Routes as New Syntheses Strategies for the Coordination Chemistry of Rare Earth Amides
3. The Oxidation of Metals with Liebig Acids
4. Simple Syntheses, Structural Diversity, and Tishchenko Reaction Catalysis of Neutral Homoleptic Rare Earth(II orIII) 3,5-Di-tert-butylpyrazolates—The Structures of [Sc(tBu2pz)3], [Ln2(tBu2pz)6] (Ln=La, Nd, Yb, Lu), and [Eu4(tBu2pz)8]
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1. Carbon dioxide affinity (“carboxophilicity”) of trivalent light metal pyrazolates;Inorganic Chemistry Frontiers;2024
2. Synthesis and reactivity of rare-earth-N,N’-(diphenyl)formamidinate and rare-earth-N,N’-bis(2,4-dimethylphenyl)formamidinate complexes;Inorganica Chimica Acta;2022-09
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