可见光谱
光催化
材料科学
纳米颗粒
纳米材料
二氧化钛
纳米技术
带隙
氧化物
光电子学
纳米晶
光化学
化学工程
格子(音乐)
氧化钛
钛
粒子(生态学)
高能
催化作用
晶格常数
作者
Ardiansyah Taufik,Akira Yoko,Kakeru Ninomiya,Maiko Nishibori,Chunli Han,Wahyudiono,Satoshi Ohara,Vinda Puspasari,Shu Yin,Tadafumi Adschiri
出处
期刊:Small
[Wiley]
日期:2026-04-07
卷期号:: e73316-e73316
摘要
Developing efficient and low-cost visible light photocatalysts remains a fundamental challenge. Titanium dioxide (TiO2), although stable and abundant, suffers from a wide bandgap and limited surface area. In this study, visible light active ultrasmall approximately 2 nm (∼2 nm) TiO2 nanoparticles were synthesized to overcome these limitations. Unlike conventional post-annealing routes that promote particle growth, this visible light-active ultrasmall TiO2 was directly obtained through a continuous flow-hydrothermal process with precise temperature control and sub-second reaction time. The ultrasmall (∼2 nm) TiO2 structure reveals the highly distorted lattice structure. The high lattice distortion, which contains an undercoordinated Ti atom, induces the localized states that modify the band structure of TiO2 and decrease its activation energy to the visible light region. The resulting ∼2 nm TiO2 exhibits nearly threefold higher photocatalytic activity for NOx removal under visible irradiation, opening a new direction for designing ultrasmall oxide nanomaterials for next-generation photocatalysis.
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