Literature DB >> 23598738

Ionic liquid thermal stabilities: decomposition mechanisms and analysis tools.

Cedric Maton1, Nils De Vos, Christian V Stevens.   

Abstract

The increasing amount of papers published on ionic liquids generates an extensive quantity of data. The thermal stability data of divergent ionic liquids are collected in this paper with attention to the experimental set-up. The influence and importance of the latter parameters are broadly addressed. Both ramped temperature and isothermal thermogravimetric analysis are discussed, along with state-of-the-art methods, such as TGA-MS and pyrolysis-GC. The strengths and weaknesses of the different methodologies known to date demonstrate that analysis methods should be in line with the application. The combination of data from advanced analysis methods allows us to obtain in-depth information on the degradation processes. Aided with computational methods, the kinetics and thermodynamics of thermal degradation are revealed piece by piece. The better understanding of the behaviour of ionic liquids at high temperature allows selective and application driven design, as well as mathematical prediction for engineering purposes.

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Year:  2013        PMID: 23598738     DOI: 10.1039/c3cs60071h

Source DB:  PubMed          Journal:  Chem Soc Rev        ISSN: 0306-0012            Impact factor:   54.564


  35 in total

1.  Gallium-rich Pd-Ga phases as supported liquid metal catalysts.

Authors:  N Taccardi; M Grabau; J Debuschewitz; M Distaso; M Brandl; R Hock; F Maier; C Papp; J Erhard; C Neiss; W Peukert; A Görling; H-P Steinrück; P Wasserscheid
Journal:  Nat Chem       Date:  2017-07-24       Impact factor: 24.427

2.  Toward an Understanding of the Mechanisms behind the Formation of Liquid-liquid Systems formed by Two Ionic Liquids.

Authors:  Catarina M S S Neves; Artur M S Silva; Ana M Fernandes; João A P Coutinho; Mara G Freire
Journal:  J Phys Chem Lett       Date:  2017-06-19       Impact factor: 6.475

3.  Ionic liquids of superior thermal stability. Validation of PPh4 + as an organic cation of impressive thermodynamic durability.

Authors:  Mohammad Soltani; Jimmie L McGeehee; Alexandra C Stenson; Richard A O'Brien; Edward R Duranty; E Alan Salter; Andrzej Wierzbicki; T Grant Glover; James H Davis
Journal:  RSC Adv       Date:  2020-05-29       Impact factor: 4.036

Review 4.  Ionic liquids: a brief history.

Authors:  Tom Welton
Journal:  Biophys Rev       Date:  2018-04-26

5.  Properties of Dicationic Disiloxane Ionic Liquids.

Authors:  Vladimir G Krasovskiy; Gennady I Kapustin; Olga B Gorbatsevich; Lev M Glukhov; Elena A Chernikova; Anatoly A Koroteev; Leonid M Kustov
Journal:  Molecules       Date:  2020-06-26       Impact factor: 4.411

6.  Porphyrinic Ionic Liquid Dyes: Synthesis and Characterization.

Authors:  Kai Li; Hatem M Titi; Paula Berton; Robin D Rogers
Journal:  ChemistryOpen       Date:  2018-08-27       Impact factor: 2.911

7.  Thermal Stability and Decomposition Kinetics of 1-Alkyl-2,3-Dimethylimidazolium Nitrate Ionic Liquids: TGA and DFT Study.

Authors:  Jianwen Meng; Yong Pan; Fan Yang; Yanjun Wang; Zhongyu Zheng; Juncheng Jiang
Journal:  Materials (Basel)       Date:  2021-05-14       Impact factor: 3.623

Review 8.  Chiral Ionic Liquids: Structural Diversity, Properties and Applications in Selected Separation Techniques.

Authors:  Jolanta Flieger; Joanna Feder-Kubis; Małgorzata Tatarczak-Michalewska
Journal:  Int J Mol Sci       Date:  2020-06-15       Impact factor: 5.923

Review 9.  Insights into the Properties and Potential Applications of Renewable Carbohydrate-Based Ionic Liquids: A Review.

Authors:  Bartłomiej Gaida; Alina Brzęczek-Szafran
Journal:  Molecules       Date:  2020-07-20       Impact factor: 4.411

10.  Developing New Inexpensive Room-Temperature Ionic Liquids with High Thermal Stability and a Greener Synthetic Profile.

Authors:  Mahdi Ghorbani; Michela I Simone
Journal:  ACS Omega       Date:  2020-05-28
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