Nonstoichiometric ceria, CeO2-δ, has emerged as a promising redox material for thermochemically splitting H2O and CO2 using concentrated solar energy. Knowledge of its radiative properties is crucial for the design of efficient solar reactors. Samples of various nonstoichiometries (0≤δ≤0.0377) were prepared by thermal reduction in a thermogravimetric analyzer at high temperatures (T≥1473 K) and under low oxygen partial pressures (pO2≤2.5·10−4 atm). The spectral hemispherical reflectivity was measured using a spectroscopic goniometry system in the spectral range 300–2800 nm. A porous ceria sample with interconnected µm-sized pores showed comparable selectivity because of its high optical thickness. The total hemispherical reflectivity was co...
Since 2006, ceria is used as a redox reactive material for production of H2, CO, and syngas via a tw...
The redox reactivity of the Li-, Mg-, Ca-, Sr-, Ba-, and Sn-doped ceria (Ce0.9A0.1O2−δ) toward therm...
Developing an efficient redox material is crucial for thermochemical cycles that produce solar fuels...
AbstractNonstoichiometric ceria, CeO2-δ, has emerged as a promising redox material for thermochemica...
AbstractNonstoichiometric ceria, CeO2-δ, has emerged as a promising redox material for thermochemica...
The complex refractive index of ceria has been determined at ambient temperature using variable angl...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
Ceria is an interesting material for high temperature redox applications like solar-thermal splittin...
In this paper, the thermal reduction and CO2splitting ability of Ce0.9Cr0.102-δare investigated by p...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
Copyright © 2013 Friedemann Call et al. This is an open access article distributed under the Creativ...
The adverse effects of anthropogenic climate change and the detrimental environmental impact of foss...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
University of Minnesota Ph.D. dissertation. February 2013. Major: Mechanical Engineering. Advisor: W...
Since 2006, ceria is used as a redox reactive material for production of H2, CO, and syngas via a tw...
The redox reactivity of the Li-, Mg-, Ca-, Sr-, Ba-, and Sn-doped ceria (Ce0.9A0.1O2−δ) toward therm...
Developing an efficient redox material is crucial for thermochemical cycles that produce solar fuels...
AbstractNonstoichiometric ceria, CeO2-δ, has emerged as a promising redox material for thermochemica...
AbstractNonstoichiometric ceria, CeO2-δ, has emerged as a promising redox material for thermochemica...
The complex refractive index of ceria has been determined at ambient temperature using variable angl...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
Ceria is an interesting material for high temperature redox applications like solar-thermal splittin...
In this paper, the thermal reduction and CO2splitting ability of Ce0.9Cr0.102-δare investigated by p...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
Copyright © 2013 Friedemann Call et al. This is an open access article distributed under the Creativ...
The adverse effects of anthropogenic climate change and the detrimental environmental impact of foss...
The Helmholtz Virtual Institute (VI) SolarSynGas brings together expertise from solar energy researc...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
University of Minnesota Ph.D. dissertation. February 2013. Major: Mechanical Engineering. Advisor: W...
Since 2006, ceria is used as a redox reactive material for production of H2, CO, and syngas via a tw...
The redox reactivity of the Li-, Mg-, Ca-, Sr-, Ba-, and Sn-doped ceria (Ce0.9A0.1O2−δ) toward therm...
Developing an efficient redox material is crucial for thermochemical cycles that produce solar fuels...