Polyaromatic hydrocarbon derivatized azo-oximes of cobalt() for the ligand-redox controlled electrocatalytic oxygen reduction reaction
A pair of ligands HL Pyr 1a and HL Anc 1b (Pyr = pyrene, Anc = anthracene) incorporating π-electron-rich polycyclic aromatic hydrocarbons (PAHs), viz. pyrene and anthracene moieties respectively, in conjunction with electron-poor azo-oxime groups was synthesized. The tris complexes [Co III (L Pyr )...
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Veröffentlicht in: | New journal of chemistry 2020-03, Vol.44 (9), p.3737-3747 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A pair of ligands HL
Pyr
1a
and HL
Anc
1b
(Pyr = pyrene, Anc = anthracene) incorporating π-electron-rich polycyclic aromatic hydrocarbons (PAHs),
viz.
pyrene and anthracene moieties respectively, in conjunction with electron-poor azo-oxime groups was synthesized. The tris complexes [Co
III
(L
Pyr
)
3
]
2a
and [Co
III
(L
Anc
)
3
]
2b
were also prepared and structurally authenticated by X-ray diffraction. They exhibit significant redox and optoelectronic properties, which were analyzed by density functional theory (DFT) and time dependent density functional theory (TD-DFT). Theoretical investigation further revealed that the coordinated ligands act as superior electron reservoirs in comparison to the free ligands and transfer electrons through the PAH moieties. This property was smartly exploited to scrutinize the aptitude of the cobalt(
iii
) complexes for the electrocatalytic oxygen reduction reaction (ORR). The catalytic process proceeds
via
a 4-electron transfer pathway to form hydroxide ions in alkaline medium. The role of the PAHs in the complexes
2a
and
2b
in providing a pool of electrons was further emphasized
via
substituting them with phenyl groups, as in [Co
III
(L
Ph
)
3
]
2c
, when the catalytic ORR activity was significantly diminished. Moreover, the activity was completely lost when the PAHs were replaced by methyl groups, as in [Co
III
(L
Me
)
3
]
2d
.
Two new polyaromatic hydrocarbon (PAH) derivatized cobalt(
iii
) azo-oxime complexes were synthesized and their activity in electrocatalytic oxygen reduction reaction (ORR) were explored. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/c9nj05527d |