Comments on “Interlayer Atomic Voids by Partial Cesium Defect in Layered Titanate Activate Photo(electro)catalytic H2 and O2 Generation”
Abstract
Üstünel et al. ( ACS Appl. Energy Mater., DOI:10.1021/acsaem.5c01514) recently proposed the interesting concept of interlayer Cs voids formation in lepidocrocite-type Cs2Ti6O13. This was accomplished via treatment of the titanate with an aqueous solution of cetyltrimethylammonium bromide, followed by heat treatment at 700 °C. We present an alternative explanation focusing on: (i) unintended proton exchange from the medium; and (ii) subsequent thermal dehydration/dehydroxylation to anatase and “defective Cs2Ti6O13”. Our interpretation based on the classical chemistry of layered materials is consistent with their experimental results.
Description
Keywords
defect engineering, dehydration, dehydroxylation, interlayer atomic Cs voids, optical band gap, recrystallization
Citation
ACS Applied Energy Materials, 9(6), 2928-2930, 2026
