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Probing electrochemical reactions in organic cathode materials via in operando infrared spectroscopy.


ABSTRACT: Organic materials are receiving an increasing amount of attention as electrode materials for future post lithium-ion batteries due to their versatility and sustainability. However, their electrochemical reaction mechanism has seldom been investigated. This is a direct consequence of a lack of straightforward and broadly available analytical techniques. Herein, a straightforward in operando attenuated total reflectance infrared spectroscopy method is developed that allows visualization of changes of all infrared active bands that occur as a consequence of reduction/oxidation processes. In operando infrared spectroscopy is applied to the analysis of three different organic polymer materials in lithium batteries. Moreover, this in operando method is further extended to investigation of redox reaction mechanism of poly(anthraquinonyl sulfide) in a magnesium battery, where a reduction of carbonyl bond is demonstrated as a mechanism of electrochemical activity. Conclusions done by the in operando results are complemented by synthesis of model compound and density functional theory calculation of infrared spectra.

SUBMITTER: Vizintin A 

PROVIDER: S-EPMC5812995 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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Probing electrochemical reactions in organic cathode materials via in operando infrared spectroscopy.

Vizintin Alen A   Bitenc Jan J   Kopač Lautar Anja A   Pirnat Klemen K   Grdadolnik Jože J   Stare Jernej J   Randon-Vitanova Anna A   Dominko Robert R  

Nature communications 20180214 1


Organic materials are receiving an increasing amount of attention as electrode materials for future post lithium-ion batteries due to their versatility and sustainability. However, their electrochemical reaction mechanism has seldom been investigated. This is a direct consequence of a lack of straightforward and broadly available analytical techniques. Herein, a straightforward in operando attenuated total reflectance infrared spectroscopy method is developed that allows visualization of changes  ...[more]

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