Photocatalytic CO2 Reduction Using Ti3C2X y (X = Oxo, OH, F, or Cl) MXene-ZrO2: Structure, Electron Transmission, and the Stability

被引:4
|
作者
Zhang, Hongwei [1 ]
Abe, Ikki [2 ]
Oyumi, Tomoki [2 ]
Ishii, Rento [2 ]
Hara, Keisuke [2 ]
Izumi, Yasuo [2 ]
机构
[1] Minist Agr & Rural Affairs, Chengdu Biogas Inst, Key Lab Dev & Applicat Rural Renewable Energy, Chengdu 610041, Peoples R China
[2] Grad Sch Sci, Dept Chem, Chiba, 2638522, Japan
基金
日本科学技术振兴机构; 日本学术振兴会; 中国国家自然科学基金;
关键词
ADSORPTION;
D O I
10.1021/acs.langmuir.3c03883
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
CO2 photoreduction using a semiconductor-based photocatalyst is a promising option for completing a new carbon-neutral cycle. The short lifetime of charges generated owing to light energy is one of the most critical problems in further improving the performance of semiconductor-based photocatalysts. This study shows the structure, electron transmission, and stability of Ti3C2Xy (X = oxo, OH, F, or Cl) MXene combined with a ZrO2 photocatalyst. Using H-2 as a reductant, the photocatalytic CO formation rate increased by 6.6 times to 4.6 mu mol h(-1) g(cat)(-1) using MXene (3.0 wt %)-ZrO2 compared to that using ZrO2, and the catalytic route was confirmed using (CO2)-C-13 to form (CO)-C-13. In clear contrast, using H2O (gas) as a reductant, CH4 was formed as the major product using Ti3C2Xy MXene (5.0 wt %)-ZrO2 at the rate of 3.9 mu mol h(-1) g(cat)(-1). Using (CO2)-C-13 and H2O, (CH4)-C-12, (C2H6)-C-12, and (C3H8)-C-12 were formed besides (H2CO)-C-12, demonstrating that the C source was the partial decomposition and hydrogenation of Ti3C2Xy. Using the atomic force and high-resolution electron microscopies, 1.6 nm thick Ti3C2Xy MXene sheets were observed, suggesting similar to 3 stacked layers that are consistent with the Ti-C and Ti<middle dot><middle dot><middle dot>Ti interatomic distances of 0.218 and 0.301 nm, respectively, forming a [Ti6C] octahedral coordination, and the major component as the X ligand was suggested to be F and OH/oxo, with the temperature increasing by 116 K or higher owing to the absorbed light energy, all based on the extended X-ray absorption fine structure analysis. [GRAPHICS] .
引用
收藏
页码:6330 / 6341
页数:12
相关论文
共 50 条
  • [1] TiO2/MXene Ti3C2 composite with excellent photocatalytic CO2 reduction activity
    Low, Jingxiang
    Zhang, Liuyang
    Tong, Tong
    Shen, Baojia
    Yu, Jiaguo
    JOURNAL OF CATALYSIS, 2018, 361 : 255 - 266
  • [2] The enhancement of photocatalytic CO2 reduction by the in situ growth of TiO2 on Ti3C2 MXene
    Chen, Liuyun
    Huang, Kelin
    Xie, Qingruo
    Lam, Sze Mun
    Sin, Jin Chung
    Su, Tongming
    Ji, Hongbing
    Qin, Zuzeng
    CATALYSIS SCIENCE & TECHNOLOGY, 2021, 11 (04) : 1602 - 1614
  • [3] Simultaneous interactions of amphoteric halogen in XY (X = Cl, Br and Y = F, Cl, Br) with C and O atoms of CO2 in ring-shaped CO2•X(Y)•CO2 complexes
    Yang, Xing
    Zhou, Pan-Pan
    Zhou, Da-Gang
    Zheng, Pei-Jun
    Dai, Yang
    Yan, Chao-Xian
    Yang, Zhaoyong
    COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2016, 1076 : 32 - 41
  • [4] Frustrated Lewis Pairs on In(OH)3-x Facilitate Photocatalytic CO2 Reduction
    Liang, Xiaoyu
    Wang, Xinkui
    Zhang, Xinxin
    Lin, Sisi
    Ji, Min
    Wang, Min
    ACS CATALYSIS, 2023, 13 (09) : 6214 - 6221
  • [5] Synergistically enhancing CO2 adsorption/activation and electron transfer in ZIF-67/Ti3C2Tx MXene for boosting photocatalytic CO2 reduction
    Li, Ziyi
    Xiong, Jia
    Song, Hang
    Liu, Shuchang
    Huang, Yufei
    Huang, Yangqiang
    Waterhouse, Geoffrey I. N.
    Wang, Ziyun
    Mao, Yu
    Liang, Zhiwu
    Luo, Xiao
    SEPARATION AND PURIFICATION TECHNOLOGY, 2024, 341
  • [6] Selective Reduction of CO2 on Ti2C(OH)2 MXene through Spontaneous Crossing of Transition States
    Parui, Arko
    Srivastava, Pooja
    Singh, Abhishek Kumar
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (36) : 40913 - 40920
  • [7] Cu2O/Ti3C2 MXene heterojunction photocatalysts for improved CO2 photocatalytic reduction performance
    Zhang, Junzheng
    Shi, Jingjing
    Tao, Sheng
    Wu, Lei
    Lu, Jun
    APPLIED SURFACE SCIENCE, 2021, 542
  • [8] Electronic structure and magnetic properties of Y2Ti(μ-X)2TiY2 (X, Y=H, F, Cl, Br) isomers
    Aikens, CM
    Gordon, MS
    JOURNAL OF PHYSICAL CHEMISTRY A, 2003, 107 (01): : 104 - 114
  • [9] Atomic-Scale Recognition of Surface Structure and Intercalation Mechanism of Ti3C2X
    Wang, Xuefeng
    Shen, Xi
    Gao, Yurui
    Wang, Zhaoxiang
    Yu, Richeng
    Chen, Liquan
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2015, 137 (07) : 2715 - 2721
  • [10] STRUCTURE AND RELATIVE ENERGIES OF C2H2X+ ISOMERS (X = F, OH, NH2, CL, AND SH)
    KOLLMAN, P
    NELSON, S
    ROTHENBERG, S
    JOURNAL OF PHYSICAL CHEMISTRY, 1978, 82 (12): : 1403 - 1406