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result(s) for
"Sahraie, Nastaran Ranjbar"
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Identification of catalytic sites in cobalt-nitrogen-carbon materials for the oxygen reduction reaction
by
Zitolo, Andrea
,
Fonda, Emiliano
,
Ranjbar-Sahraie, Nastaran
in
639/638/161/886
,
639/638/161/893
,
Absorption spectroscopy
2017
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular and solid-state catalysis. Metal-nitrogen-carbon materials prepared via pyrolysis are promising single-atom catalysts but often also comprise metallic particles. Here, we pyrolytically synthesize a Co–N–C material only comprising atomically dispersed cobalt ions and identify with X-ray absorption spectroscopy, magnetic susceptibility measurements and density functional theory the structure and electronic state of three porphyrinic moieties, CoN
4
C
12
, CoN
3
C
10,porp
and CoN
2
C
5
. The O
2
electro-reduction and
operando
X-ray absorption response are measured in acidic medium on Co–N–C and compared to those of a Fe–N–C catalyst prepared similarly. We show that cobalt moieties are unmodified from 0.0 to 1.0 V versus a reversible hydrogen electrode, while Fe-based moieties experience structural and electronic-state changes. On the basis of density functional theory analysis and established relationships between redox potential and O
2
-adsorption strength, we conclude that cobalt-based moieties bind O
2
too weakly for efficient O
2
reduction.
Nitrogen-doped carbon materials with atomically dispersed iron or cobalt are promising for catalytic use. Here, the authors show that cobalt moieties have a higher redox potential, bind oxygen more weakly and are less active toward oxygen reduction than their iron counterpart, despite similar coordination.
Journal Article
Quantifying the density and utilization of active sites in non-precious metal oxygen electroreduction catalysts
by
Sahraie, Nastaran Ranjbar
,
Reier, Tobias
,
Paraknowitsch, Jens-Peter
in
140/146
,
639/301/299/161
,
639/638/440/94
2015
Carbon materials doped with transition metal and nitrogen are highly active, non-precious metal catalysts for the electrochemical conversion of molecular oxygen in fuel cells, metal air batteries, and electrolytic processes. However, accurate measurement of their intrinsic turn-over frequency and active-site density based on metal centres in bulk and surface has remained difficult to date, which has hampered a more rational catalyst design. Here we report a successful quantification of bulk and surface-based active-site density and associated turn-over frequency values of mono- and bimetallic Fe/N-doped carbons using a combination of chemisorption, desorption and
57
Fe Mössbauer spectroscopy techniques. Our general approach yields an experimental descriptor for the intrinsic activity and the active-site utilization, aiding in the catalyst development process and enabling a previously unachieved level of understanding of reactivity trends owing to a deconvolution of site density and intrinsic activity.
Iron and nitrogen doped carbon materials are widely studied electrocatalysts, however measurement of features such as intrinsic turn-over frequency and active site utilization has proved difficult. Here, the authors use a combination of chemisorption and spectroscopy techniques to determine these properties.
Journal Article
Introducing Discover Applied Sciences
by
Sahraie, Nastaran Ranjbar
,
Poole, Chris
,
von Larcher, Thomas
in
Open access publishing
,
Peer review
2024
Journal Article