We report the first ever robocast (additive manufacturing/3D printing) sintered ceria scaffolds, and explore their use for the production of renewable fuels via solar thermochemical fuel production (STFP, water and carbon dioxide splitting using concentrated solar energy). CeO2 catalyst scaffolds were fabricated as 50 mm diameter discs (struts and voids ∼500 μm), sintered at 1450 °C, with specific surface area of 1.58 m2 g−1. These scaffolds have hierarchical porosity, consisting of the macroporous scaffold structure combined with nanoscale porosity within the ceria struts, with mesopores under 75 Å and an average pore size of ∼4 nm, and microporosity under 2 nm with a microporous surface area of 0.29 m2 g−1. The ceria grains were ≤500 nm i...
Two-step thermochemical cycling was achieved using CeO<sub>2</sub> with sub-micrometer sized macropo...
Solar thermochemical conversion of H2O and captured CO2 is considered for the production of high-val...
The main goal of this research is the development of new mesoporous materials for low-temperature me...
We report the first ever robocast (additive manufacturing/3D printing) sintered ceria scaffolds, and...
This work addresses the solar-driven thermochemical production of CO and O2 from two-step CO2-splitt...
Flame-made nano-structured and commercial micro-structured ceria powders are assessed for two-step ...
This review explores the advances in the synthesis of ceria materials with specific morphologies or ...
Fuel produced from CO2 and H2O using solar energy can contribute to making aviation more sustainable...
ABSTRACT: This review explores the advances in the synthesis of ceria materials with specific morpho...
ABSTRACT: Solar thermochemical conversion of H2O and captured CO2 is considered for the production o...
Naturally occurring and sustainable materials can be used as a template to create biomimetic/biomorp...
ABSTRACT: Water splitting by solar energy-driven two-step thermochemical cycles is a promising appro...
The solar resource can be converted into liquid fuels to offset petroleum use in the transportation ...
Water splitting by solar energy-driven two-step thermochemical cycles is a promising approach for la...
This thesis reports on the development, optimization and experimental testing of a solar receiver-re...
Two-step thermochemical cycling was achieved using CeO<sub>2</sub> with sub-micrometer sized macropo...
Solar thermochemical conversion of H2O and captured CO2 is considered for the production of high-val...
The main goal of this research is the development of new mesoporous materials for low-temperature me...
We report the first ever robocast (additive manufacturing/3D printing) sintered ceria scaffolds, and...
This work addresses the solar-driven thermochemical production of CO and O2 from two-step CO2-splitt...
Flame-made nano-structured and commercial micro-structured ceria powders are assessed for two-step ...
This review explores the advances in the synthesis of ceria materials with specific morphologies or ...
Fuel produced from CO2 and H2O using solar energy can contribute to making aviation more sustainable...
ABSTRACT: This review explores the advances in the synthesis of ceria materials with specific morpho...
ABSTRACT: Solar thermochemical conversion of H2O and captured CO2 is considered for the production o...
Naturally occurring and sustainable materials can be used as a template to create biomimetic/biomorp...
ABSTRACT: Water splitting by solar energy-driven two-step thermochemical cycles is a promising appro...
The solar resource can be converted into liquid fuels to offset petroleum use in the transportation ...
Water splitting by solar energy-driven two-step thermochemical cycles is a promising approach for la...
This thesis reports on the development, optimization and experimental testing of a solar receiver-re...
Two-step thermochemical cycling was achieved using CeO<sub>2</sub> with sub-micrometer sized macropo...
Solar thermochemical conversion of H2O and captured CO2 is considered for the production of high-val...
The main goal of this research is the development of new mesoporous materials for low-temperature me...