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Ceria-based electrospun fibers for renewable fuel production via two-step thermal redox cycles for carbon dioxide splitting
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Gibbons WT
,
Venstrom LJ
,
De Smith RM
,
Davidson JH
,
Jackson GS
. 2014.
Ceria-based electrospun fibers for renewable fuel production via two-step thermal redox cycles for carbon dioxide splitting
.
Physical Chemistry Chemical Physics. 16(27):14271.
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Energy and Climate Impacts of Producing Synthetic Hydrocarbon Fuels from CO <sub>2</sub>
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
van der Giesen C
,
Kleijn R
,
Kramer GJan
. 0.
Energy and Climate Impacts of Producing Synthetic Hydrocarbon Fuels from CO
2
.
Environmental Science & Technology. 48(12):7111-7121.
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about Energy and Climate Impacts of Producing Synthetic Hydrocarbon Fuels from CO 2
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CeO2 modified Fe2O3 for the chemical hydrogen storage and production via cyclic water splitting
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Zhu X
,
Sun L
,
Zheng Y
,
Wang H
,
Wei Y
,
Li K
. 2014.
CeO2 modified Fe2O3 for the chemical hydrogen storage and production via cyclic water splitting
.
International Journal of Hydrogen Energy. 39(25):13381-13388.
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Intrinsic material properties dictating oxygen vacancy formation energetics in metal oxides
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Deml AM
,
Holder AM
,
O’Hayre RP
,
Musgrave CB
,
Stevanović V
. 0.
Intrinsic material properties dictating oxygen vacancy formation energetics in metal oxides
.
The Journal of Physical Chemistry Letters. 6(10):1948-1953.
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Maximizing efficiency in two-step solar-thermochemical fuel production
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Ermanoski I.
. 0.
Maximizing efficiency in two-step solar-thermochemical fuel production
.
Energy Procedia. 69:1731-1740.
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Synthesis, Characterization, and Thermochemical Redox Performance of Hf <sup>4+</sup> , Zr <sup>4+</sup> , and Sc <sup>3+</sup> Doped Ceria for Splitting CO <sub>2</sub>
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Scheffe JR
,
Jacot R
,
Patzke GR
,
Steinfeld A
. 0.
Synthesis, Characterization, and Thermochemical Redox Performance of Hf
4+
, Zr
4+
, and Sc
3+
Doped Ceria for Splitting CO
2
.
The Journal of Physical Chemistry C. 117(46):24104-24114.
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about Synthesis, Characterization, and Thermochemical Redox Performance of Hf 4+ , Zr 4+ , and Sc 3+ Doped Ceria for Splitting CO 2
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Kinetics and thermodynamics of H<sub>2</sub>O dissociation on reduced CeO<sub>2</sub>(111)
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Hansen HA
,
Wolverton C
. 0.
Kinetics and thermodynamics of H
2
O dissociation on reduced CeO
2
(111)
.
The Journal of Physical Chemistry C. 118(47):27402-27414.
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about Kinetics and thermodynamics of H2O dissociation on reduced CeO2(111)
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Solar thermochemical conversion of CO<sub>2</sub> into fuel via two-step redox cycling of non-stoichiometric Mn-containing perovskite oxides
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Demont A
,
Abanades S
. 2015.
Solar thermochemical conversion of CO
2
into fuel via two-step redox cycling of non-stoichiometric Mn-containing perovskite oxides
.
J. Mater. Chem. A. 3(7):3536-3546.
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about Solar thermochemical conversion of CO2 into fuel via two-step redox cycling of non-stoichiometric Mn-containing perovskite oxides
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Noteworthy performance of La<sub>1−x</sub>Ca<sub>x</sub>MnO<sub>3</sub> perovskites in generating H<sub>2</sub> and CO by the thermochemical splitting of H<sub>2</sub>O and CO<sub>2</sub>
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Dey S
,
Naidu B.S
,
Govindaraj A.
,
Rao C.NR
. 2015.
Noteworthy performance of La
1−x
Ca
x
MnO
3
perovskites in generating H
2
and CO by the thermochemical splitting of H
2
O and CO
2
.
Phys. Chem. Chem. Phys.. 17(1):122-125.
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about Noteworthy performance of La1−xCaxMnO3 perovskites in generating H2 and CO by the thermochemical splitting of H2O and CO2
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Design principles of perovskites for thermochemical oxygen separation
Submitted by
Anonymous (not verified)
on Thu, 08/13/2020 - 12:25
Ezbiri M
,
Allen KM
,
Gàlvez ME
,
Michalsky R
,
Steinfeld A
. 0.
Design principles of perovskites for thermochemical oxygen separation
.
ChemSusChem. 8(11):1966-1971.
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