材料科学
光催化
氮化钛
等离子体子
铟
钛
氧化钛
氧化物
化学工程
纳米技术
氮化物
光电子学
图层(电子)
催化作用
冶金
化学
工程类
生物化学
作者
Nhat Truong Nguyen,Tingjiang Yan,Lu Wang,Joel Y. Y. Loh,Paul N. Duchesne,Chengliang Mao,Peicheng Li,Feysal M. Ali,Meikun Xia,Mireille Ghoussoub,Nazir P. Kherani,Zheng‐Hong Lu,Geoffrey A. Ozin
出处
期刊:Small
[Wiley]
日期:2020-11-17
卷期号:16 (49)
被引量:41
标识
DOI:10.1002/smll.202005754
摘要
Nanoscale titanium nitride TiN is a metallic material that can effectively harvest sunlight over a broad spectral range and produce high local temperatures via the photothermal effect. Nanoscale indium oxide-hydroxide, In2 O3-x (OH)y , is a semiconducting material capable of photocatalyzing the hydrogenation of gaseous CO2 ; however, its wide electronic bandgap limits its absorption of photons to the ultraviolet region of the solar spectrum. Herein, the benefits of both nanomaterials in a ternary heterostructure: TiN@TiO2 @In2 O3-x (OH)y are combined. This heterostructured material synergistically couples the metallic TiN and semiconducting In2 O3-x (OH)y phases via an interfacial semiconducting TiO2 layer, allowing it to drive the light-assisted reverse water gas shift reaction at a conversion rate greatly surpassing that of its individual components or any binary combinations thereof.
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