ozone molecule
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2021 ◽  
Vol 34 (5) ◽  
pp. 373-380
Author(s):  
S. S. Vasilchenko ◽  
S. Kassi ◽  
D. Mondelain ◽  
A. Campargue

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Guoxiang Zhu ◽  
Wei Zhu ◽  
Yang Lou ◽  
Jun Ma ◽  
Wenqing Yao ◽  
...  

AbstractMajor challenges encountered when developing manganese-based materials for ozone decomposition are related to the low stability and water inactivation. To solve these problems, a hierarchical structure consisted of graphene encapsulating α-MnO2 nanofiber was developed. The optimized catalyst exhibited a stable ozone conversion efficiency of 80% and excellent stability over 100 h under a relative humidity (RH) of 20%. Even though the RH increased to 50%, the ozone conversion also reached 70%, well beyond the performance of α-MnO2 nanofiber. Here, surface graphite carbon was activated by capturing the electron from inner unsaturated Mn atoms. The excellent stability originated from the moderate local work function, which compromised the reaction barriers in the adsorption of ozone molecule and the desorption of the intermediate oxygen species. The hydrophobic graphene shells hindered the chemisorption of water vapour, consequently enhanced its water resistance. This work offered insights for catalyst design and would promote the practical application of manganese-based catalysts in ozone decomposition.


2021 ◽  
Vol 34 (5) ◽  
pp. 315-322
Author(s):  
S.S. Vasilchenko ◽  
S. Kassi ◽  
D. Mondelain ◽  
A. Campargue

2020 ◽  
Vol 62 (10) ◽  
pp. 1917-1925 ◽  
Author(s):  
O. V. Egorov ◽  
F. Mauguiere ◽  
VI. G. Tyuterev

2020 ◽  
Vol 22 (28) ◽  
pp. 15885-15899 ◽  
Author(s):  
Viatcheslav Kokoouline ◽  
David Lapierre ◽  
Alexander Alijah ◽  
Vladimir Tyuterev

Knowledge of highly excited rovibrational states of ozone isotopologues is of key importance for modelling the dynamics of exchange reactions, for understanding longstanding problems related to isotopic anomalies of the ozone formation, and for analyses of extra-sensitive laser spectral experiments currently in progress.


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