Homogeneously-catalysed hydrogen release/storage using the 2-methylindole/2-methylindoline LOHC system in molten salt-organic biphasic reaction systems

Ir-Complex catalysed hydrogen release/storage using a 2-methylindole/2-methylindoline Liquid Organic Hydrogen Carrier (LOHC) system is shown to be effective in a temperature range of 120 to 140 °C. In the form of a liquid-liquid biphasic reaction system with molten [PPh 4 ][NTf 2 ] as catalyst immob...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2019-02, Vol.55 (14), p.246-249
Hauptverfasser: Søgaard, Alexander, Scheuermeyer, Marlene, Bösmann, Andreas, Wasserscheid, Peter, Riisager, Anders
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container_end_page 249
container_issue 14
container_start_page 246
container_title Chemical communications (Cambridge, England)
container_volume 55
creator Søgaard, Alexander
Scheuermeyer, Marlene
Bösmann, Andreas
Wasserscheid, Peter
Riisager, Anders
description Ir-Complex catalysed hydrogen release/storage using a 2-methylindole/2-methylindoline Liquid Organic Hydrogen Carrier (LOHC) system is shown to be effective in a temperature range of 120 to 140 °C. In the form of a liquid-liquid biphasic reaction system with molten [PPh 4 ][NTf 2 ] as catalyst immobilisation phase, the applied cationic Ir-complex can be easily separated and recycled enabling a small amount of ionic catalyst solution to store/release a large amount of hydrogen. Hydrogenation/dehydrogenation is effectively catalyzed by a molten salt immobilized Ir-complex in a temperature range of 120 to 140 °C in a 2-methylindole/2-methylindoline Liquid Hydrogen Carrier (LOHC) system.
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Catalysis
Catalysts
Hydrogen
Hydrogen storage
Molten salts
title Homogeneously-catalysed hydrogen release/storage using the 2-methylindole/2-methylindoline LOHC system in molten salt-organic biphasic reaction systems
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