Surface engineering of TiO2 is faced with the challenge of high solar-to-hydrogen conversion efficiency. Recently, surface-disordered TiO2, referred to as black TiO2, which can absorb both visible and near-infrared solar light, has triggered an explosion of interest in many important applications. Unfortunately, the mechanism underlying the improved photocatalytic effect from an amorphous surface layer remains unclear and seems to contradict conventional wisdom. Here, we demonstrate selectively "disorder engineered" Degussa P-25 TiO2 nanoparticles using simple room-temperature solution processing, which maintain the unique three-phase interfaces composed of ordered white-anatase and disordered black-rutile with open structures for easy elec...
© The Royal Society of Chemistry 2021.Black TiO2with/without noble metals has been proposed for visi...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
Black TiO2 has emerged as one of the most promising photocatalysts recently discovered. The reason b...
Surface engineering of TiO2 is faced with the challenge of high solar-to-hydrogen conversion efficie...
Abstract Among the substantial amount of photocatalyst materials, TiO2 has been enthusiastically stu...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
HighlightsMilestones of TiO2 development and invention of phase-selectively ordered/disordered blue ...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
One of the most important issues in photocatalysis research has been the development of TiO2-based p...
Since the 1980s, photocatalysis research has expanded at an unexpected rate. Fabrication of phase ju...
Black TiO<sub>2</sub> obtained by hydrogenation has attracted enormous attention due to its unusual ...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Solar-energy-driven water splitting represents one of the most sustainable and clean hydrogen source...
© The Royal Society of Chemistry 2021. Photocatalytic N-2 fixation to NH3 via defect creation on TiO...
© The Royal Society of Chemistry 2021.Black TiO2with/without noble metals has been proposed for visi...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
Black TiO2 has emerged as one of the most promising photocatalysts recently discovered. The reason b...
Surface engineering of TiO2 is faced with the challenge of high solar-to-hydrogen conversion efficie...
Abstract Among the substantial amount of photocatalyst materials, TiO2 has been enthusiastically stu...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
HighlightsMilestones of TiO2 development and invention of phase-selectively ordered/disordered blue ...
Strong demand for affordable clean energy to support applications ranging from conventional energy s...
One of the most important issues in photocatalysis research has been the development of TiO2-based p...
Since the 1980s, photocatalysis research has expanded at an unexpected rate. Fabrication of phase ju...
Black TiO<sub>2</sub> obtained by hydrogenation has attracted enormous attention due to its unusual ...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Nanostructured TiO2 is one of the best materials for photocatalysis, thanks to its high surface area...
Solar-energy-driven water splitting represents one of the most sustainable and clean hydrogen source...
© The Royal Society of Chemistry 2021. Photocatalytic N-2 fixation to NH3 via defect creation on TiO...
© The Royal Society of Chemistry 2021.Black TiO2with/without noble metals has been proposed for visi...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
Black TiO2 has emerged as one of the most promising photocatalysts recently discovered. The reason b...