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Catalytic Activation of Carbon Dioxide by Metal Complexes

Catalytic Activation of Carbon Dioxide by Metal Complexes
Author: L. Vaska
Publisher:
Total Pages: 17
Release: 1988
Genre:
ISBN:

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This paper summarizes some past and recent work from the author's laboratory on the reactions of carbon dioxide with metal complexes with the objective of suggesting the relevance of this research to some related biological systems. First, the various CO2-metal complex interactions in vivo and in vitro are briefly cited, followed by a description of the reversible activation of carbon dioxide by model rhodium and iridium compounds. Finally, recent results are presented on homogeneous catalytic hydrogenation/reduction of CO2 mediated by metal complexes, including a platinum cluster complex which catalyzes the carbon dioxide conversion at mild conditions. Keywords: Carbon dioxide, Metal complexes, Model compounds, Bicarbonato complexes, Homogeneous catalysis, Hydrogenation.


Activation and Catalytic Reactions of Saturated Hydrocarbons in the Presence of Metal Complexes

Activation and Catalytic Reactions of Saturated Hydrocarbons in the Presence of Metal Complexes
Author: A.E. Shilov
Publisher: Springer Science & Business Media
Total Pages: 551
Release: 2006-04-11
Genre: Science
ISBN: 0306469456

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hemistry is the science about breaking and forming of bonds between atoms. One of the most important processes for organic chemistry is breaking bonds C–H, as well as C–C in various compounds, and primarily, in hydrocarbons. Among hydrocarbons, saturated hydrocarbons, alkanes (methane, ethane, propane, hexane etc. ), are especially attractive as substrates for chemical transformations. This is because, on the one hand, alkanes are the main constituents of oil and natural gas, and consequently are the principal feedstocks for chemical industry. On the other hand, these substances are known to be the less reactive organic compounds. Saturated hydrocarbons may be called the “noble gases of organic chemistry” and, if so, the first representative of their family – methane – may be compared with extremely inert helium. As in all comparisons, this parallel between noble gases and alkanes is not fully accurate. Indeed the transformations of alkanes, including methane, have been known for a long time. These reactions involve the interaction with molecular oxygen from air (burning – the main source of energy!), as well as some mutual interconversions of saturated and unsaturated hydrocarbons. However, all these transformations occur at elevated temperatures (higher than 300–500 °C) and are usually characterized by a lack of selectivity. The conversion of alkanes into carbon dioxide and water during burning is an extremely valuable process – but not from a chemist viewpoint.


Carbon Dioxide as Chemical Feedstock

Carbon Dioxide as Chemical Feedstock
Author: Michele Aresta
Publisher: John Wiley & Sons
Total Pages: 414
Release: 2010-01-26
Genre: Science
ISBN: 9783527629923

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Filling the need for an up-to-date handbook, this ready reference closely investigates the use of CO2 for ureas, enzymes, carbamates, and isocyanates, as well as its use as a solvent, in electrochemistry, biomass utilization and much more. Edited by an internationally renowned and experienced researcher, this is a comprehensive source for every synthetic chemist in academia and industry.


Carbon Dioxide Chemistry, Capture and Oil Recovery

Carbon Dioxide Chemistry, Capture and Oil Recovery
Author: Iyad Karamé
Publisher: BoD – Books on Demand
Total Pages: 268
Release: 2018-08-16
Genre: Science
ISBN: 178923574X

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Fossil fuels still need to meet the growing demand of global economic development, yet they are often considered as one of the main sources of the CO2 release in the atmosphere. CO2, which is the primary greenhouse gas (GHG), is periodically exchanged among the land surface, ocean, and atmosphere where various creatures absorb and produce it daily. However, the balanced processes of producing and consuming the CO2 by nature are unfortunately faced by the anthropogenic release of CO2. Decreasing the emissions of these greenhouse gases is becoming more urgent. Therefore, carbon sequestration and storage (CSS) of CO2, its utilization in oil recovery, as well as its conversion into fuels and chemicals emerge as active options and potential strategies to mitigate CO2 emissions and climate change, energy crises, and challenges in the storage of energy.


Activation of Carbon Dioxide by Formation of Metalloheterocycles and Metallocycles

Activation of Carbon Dioxide by Formation of Metalloheterocycles and Metallocycles
Author:
Publisher:
Total Pages: 7
Release: 1995
Genre:
ISBN:

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The objective of this project was to find new ways to incorporate carbon dioxide into organic molecules by activation of the carbon dioxide within the coordination sphere of an electron rich transition metal complex. Achievements included the discovery that heteroallenes characteristically undergo reductive disproportionation with dianionic carbonyl metals and can add to electron rich - neutral carbonyl complexes such as W(eta(5)-C5H5)2(CO) to give metalloheterocycles. We have further observed that unsaturated ligands can be induced to couple with carbon dioxide by reducing the metal center so that it will activate the carbon dioxide, as exemplified by bis-carboxylation of the carbene or carbenoid ligand in the two electron reduction products of Fischer carbene complexes with phosphine substituents to give substituted malonates, and by endo carboxylation of the eta(4)arene in the Cr( -II) complex Cr(eta(4)-C6H6)(CO)32-. We have also prepared KCo(2,6- C6H3NC)4, the first example of a homoleptic isonitrile complex of a metal in a negative oxidation state and the antecedent for a new class of transition metal complexes. jg p.1.


Activation Of Small Inorganic Molecules

Activation Of Small Inorganic Molecules
Author: M.M. Taqui Khan
Publisher: Elsevier
Total Pages: 437
Release: 2012-12-02
Genre: Science
ISBN: 0323150381

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Homogeneous Catalysis by Metal Complexes, Volume I: Activation of Small Inorganic Molecules reviews and systematizes the chemistry of the metal ion activation of the small diatomic molecules. The book discusses the activation of molecular hydrogen, molecular oxygen, molecular nitrogen, carbon monoxide, and nitric oxide.