Highly efficient rutile TiO2 photocatalysts with single Cu(II) and Fe(III) surface catalytic sites

被引:75
作者
Neubert, Susann [1 ]
Mitoraj, Dariusz [1 ]
Shevlin, Stephen A. [2 ]
Pulisova, Petra [1 ]
Heimann, Manuel [1 ]
Du, Yonghua [3 ]
Goh, Gregory K. L. [4 ]
Pacia, Michal [5 ]
Kruczala, Krzysztof [5 ]
Turner, Stuart [6 ]
Macyk, Wojciech [5 ]
Guo, Zheng Xiao [2 ]
Hocking, Rosalie K. [7 ]
Beranek, Radim [1 ,8 ]
机构
[1] Ruhr Univ Bochum, Fac Chem & Biochem, Univ Str 150, D-44780 Bochum, Germany
[2] UCL, Dept Chem, London WC1E 6BT, England
[3] ASTAR, Inst Chem & Engn Sci, 1 Pesek Rd, Singapore 627833, Singapore
[4] ASTAR, Inst Mat Res & Engn, 3 Res Link, Singapore 117602, Singapore
[5] Jagiellonian Univ, Fac Chem, Ingardena 3, PL-30060 Krakow, Poland
[6] Univ Antwerp, EMAT, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
[7] James Cook Univ, Coll Sci Technol & Engn, Matter & Mat Grp, Townsville, Qld 4811, Australia
[8] Univ Ulm, Inst Electrochem, Albert Einstein Allee 47, D-89069 Ulm, Germany
关键词
TITANIUM-DIOXIDE; REACTION-MECHANISM; HETEROGENEOUS PHOTOCATALYSIS; PARAMAGNETIC-RESONANCE; ORGANIC-MOLECULES; ESR SPECTROSCOPY; CHARGE-TRANSFER; ONE-ELECTRON; LIGHT; OXIDATION;
D O I
10.1039/c5ta07036h
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Highly active photocatalysts were obtained by impregnation of nanocrystalline rutile TiO2 powders with small amounts of Cu(II) and Fe(III) ions, resulting in the enhancement of initial rates of photocatalytic degradation of 4-chlorophenol in water by factors of 7 and 4, compared to pristine rutile, respectively. Detailed structural analysis by EPR and X-ray absorption spectroscopy (EXAFS) revealed that Cu(II) and Fe(III) are present as single species on the rutile surface. The mechanism of the photoactivity enhancement was elucidated by a combination of DFT calculations and detailed experimental mechanistic studies including photoluminescence measurements, photocatalytic experiments using scavengers, OH radical detection, and photopotential transient measurements. The results demonstrate that the single Cu(II) and Fe(III) ions act as effective cocatalytic sites, enhancing the charge separation, catalyzing "dark" redox reactions at the interface, thus improving the normally very low quantum yields of UV light-activated TiO2 photocatalysts. The exact mechanism of the photoactivity enhancement differs depending on the nature of the cocatalyst. Cu(II)-decorated samples exhibit fast transfer of photogenerated electrons to Cu(II/I) sites, followed by enhanced catalysis of dioxygen reduction, resulting in improved charge separation and higher photocatalytic degradation rates. At Fe(III)-modified rutile the rate of dioxygen reduction is not improved and the photocatalytic enhancement is attributed to higher production of highly oxidizing hydroxyl radicals produced by alternative oxygen reduction pathways opened by the presence of catalytic Fe(III/II) sites. Importantly, it was demonstrated that excessive heat treatment (at 450 degrees C) of photocatalysts leads to loss of activity due to migration of Cu(II) and Fe(III) ions from TiO2 surface to the bulk, accompanied by formation of oxygen vacancies. The demonstrated variety of mechanisms of photoactivity enhancement at single site catalyst-modified photocatalysts holds promise for developing further tailored photocatalysts for various applications.
引用
收藏
页码:3127 / 3138
页数:12
相关论文
共 50 条
  • [41] Light-Induced Efficient Molecular Oxygen Activation on a Cu(II)-Grafted TiO2/Graphene Photocatalyst for Phenol Degradation
    Zhang, Hui
    Guo, Liang-Hong
    Wang, Dabin
    Zhao, Lixia
    Wan, Bin
    ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (03) : 1816 - 1823
  • [42] Dioxygen-enhanced CO2 photoreduction on TiO2 supported Cu single-atom sites
    Wang, Ting
    Sun, Fuli
    Liu, Shoujie
    Zhuang, Guilin
    Li, Benxia
    APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY, 2023, 325
  • [43] Effect of Ar ion irradiation on the room temperature ferromagnetism of undoped and Cu-doped rutile TiO2 single crystals
    Xu, Nan-Nan
    Li, Gong-Ping
    Lin, Qiao-Lu
    Liu, Huan
    Bao, Liang-Man
    CHINESE PHYSICS B, 2016, 25 (11)
  • [44] Highly efficient photocatalytic hydrogen evolution by using Rh as co-catalyst in the Cu/TiO2 system
    Camposeco, R.
    Hinojosa-Reyes, M.
    Zanella, R.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (51) : 26074 - 26086
  • [45] Non-noble metal Cu as a cocatalyst on TiO2 nanorod for highly efficient photocatalytic hydrogen production
    Chen, Wei
    Wang, Yanhong
    Liu, Shuang
    Gao, Li
    Mao, Liqun
    Fan, Zeyun
    Shangguan, Wenfeng
    Jiang, Zheng
    APPLIED SURFACE SCIENCE, 2018, 445 : 527 - 534
  • [46] Single-Step Synthesis of SnS2 Nanosheet-Decorated TiO2 Anatase Nanofibers as Efficient Photocatalysts for the Degradation of Gas-Phase Diethylsulfide
    Christoforidis, Konstantinos C.
    Sengele, Armelle
    Keller, Valerie
    Keller, Nicolas
    ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (34) : 19324 - 19334
  • [47] Single Atomic Cu-N2 Catalytic Sites for Highly Active and Selective Hydroxylation of Benzene to Phenol
    Zhang, Ting
    Nie, Xiaowa
    Yu, Weiwei
    Guo, Xinwen
    Song, Chunshan
    Si, Rui
    Liu, Yuefeng
    Zhao, Zhongkui
    ISCIENCE, 2019, 22 : 97 - +
  • [48] Synergistic Effect of Cu Single Atoms and Au-Cu Alloy Nanoparticles on TiO2 for Efficient CO2 Photoreduction
    Yu, Yangyang
    Dong, Xing'an
    Chen, Peng
    Geng, Qin
    Wang, Hong
    Li, Jieyuan
    Zhou, Ying
    Dong, Fan
    ACS NANO, 2021, 15 (09) : 14453 - 14464
  • [49] Fabrication of new MIL-53(Fe)@TiO2 visible-light responsive adsorptive photocatalysts for efficient elimination of tetracycline
    Zhang, Xinling
    Yuan, Ning
    Li, Yi
    Han, Lujia
    Wang, Qibao
    CHEMICAL ENGINEERING JOURNAL, 2022, 428
  • [50] Fabrication of highly efficient TiO2/C3N4 visible light driven photocatalysts with enhanced photocatalytic activity
    Faisal, M.
    Ismail, Adel A.
    Harraz, Farid A.
    Al-Sayari, S. A.
    El-Toni, Ahmed Mohamed
    Al-Salami, A. E.
    Al-Assiri, M. S.
    JOURNAL OF MOLECULAR STRUCTURE, 2018, 1173 : 428 - 438