Journal: Coordination Chemistry Reviews

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Abbreviation

Coord. Chem. Rev.

Publisher

Elsevier

Journal Volumes

ISSN

0010-8545

Description

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Publications 1 - 10 of 16
  • Wu, Ruikai; Wu Klingler, Wenyu; Stieglitz, Lucas; et al. (2023)
    Coordination Chemistry Reviews
    α-Diimine Ni and Pd complexes are one of the most examined late-transition organometallics in the application of catalyzed ethylene (co)polymerization. These organometallic catalysts provide unique advantages and particular opportunities to tailor the architectures, composition, and topology of synthesized polymers through catalyzed polymerization. Two decades after their initial discovery, they are still drawing extensive attention in both academia and industry. More recently, researchers have studied the effect of structural modifications on the α-diimine Ni and Pd complexes and their catalytic behaviors in ethylene (co)polymerization. This review highlights the recent progress in the developments of α-diimine Ni and Pd complexes achieved in the last decade. The chain-walking mechanism as a unique catalytic behavior of α-diimine Ni and Pd complexes is also addressed. The versatile synthesis of ligands and complexes enables researchers to tailor the catalytic performance and the microstructures of polyethylene. Correlations between their structural tunes and catalytic behaviors, polymer properties, and the ethylene copolymerization with polar monomers are comparatively presented and discussed. The heterogenization study of α-diimine Ni and Pd complexes on a solid support for heterogeneous catalysis is also comprehensively summarized. The review is broadly classified into four sections which includes i) the coordination-insertion chemistry in ethylene (co)polymerization, ii) the modification of ligand structure, iii) their application in the field of heterogeneous polymerization, iv) and the properties of the synthesized polymers, followed by the short summary and outlook for their potential studies and applications.
  • Bodenthin, Y.; Schwarz, G.; Tomkowicz, Z.; et al. (2009)
    Coordination Chemistry Reviews
  • Contreras-Pereda, Noemí; Pané, Salvador; Puigmarti-Luis, Josep; et al. (2022)
    Coordination Chemistry Reviews
    Triphenylene (TP) based materials have experienced a great expansion in the latest years. TP molecules have interesting optoelectronic properties, arising from the aromatic core, which have been exploited in functional two-dimensional (2D) Metal-Organic Frameworks (MOFs) and Covalent Organic Frameworks (COFs) aside other organic polymers. In this review we summarize synthetic approaches of TP-based 2D MOFs and COFs emphasizing on the resulting morphology, crystalline domains and orientation, proven to have great impact on the properties and performance of these materials in functional devices. Specifically, we report a detailed description on the different TP-based 2D structures detailing the influence of the chemical and crystalline structure on the electronic properties, specially the in-plane and out-of-plane contribution to the electrical conductivity. Finally, we give also attention and present several examples of functional devices made out with these electronic materials with great impact in the literature as well as in future technological applications.
  • Maloney, K. M.; Schief, W. R.; Pack, D. W.; et al. (1999)
    Coordination Chemistry Reviews
  • van Bokhoven, Jeroen A.; Lamberti, Carlo (2014)
    Coordination Chemistry Reviews
  • Garino, Claudio; Borfecchia, Elisa; Gobetto, Roberto; et al. (2014)
    Coordination Chemistry Reviews ~ Following Chemical Structures using Synchrotron Radiation
  • Krivokapic, Itana; Zerara, Mohamed; Daku, Max Lawson; et al. (2007)
    Coordination Chemistry Reviews
  • Alonso, Pablo J.; Martínez, Jesús I.; García-Rubio, Inés (2007)
    Coordination Chemistry Reviews
  • Coles, Nathan T.; Abels, Anne S.; Leitl, Julia; et al. (2021)
    Coordination Chemistry Reviews
    This review covers the progress that has been made during the last 10 years in the coordination chemistry of 1-phosphinines, 1,4-diphosphinines and 1,3,5-triphosphinines and related ligands. There is particular emphasis on the reactivity and application of phosphinine-containing transition metal complexes in relation to the electronic, structural and coordination properties of the corresponding phosphorus heterocycle. © 2020 Elsevier
  • Peroxynitritometal complexes
    Item type: Review Article
    Herold, Susanna; Koppenol, Willem H. (2005)
    Coordination Chemistry Reviews
Publications 1 - 10 of 16