Flame-made ternary Pd-In2O3-ZrO2 catalyst with enhanced oxygen vacancy generation for CO2 hydrogenation to methanol

被引:100
|
作者
Araujo, Thaylan Pinheiro [1 ]
Mondelli, Cecilia [1 ]
Agrachev, Mikhail [2 ]
Zou, Tangsheng [1 ]
Willi, Patrik O. [1 ]
Engel, Konstantin M. [1 ]
Grass, Robert N. [1 ]
Stark, Wendelin J. [1 ]
Safonova, Olga, V [3 ]
Jeschke, Gunnar [2 ]
Mitchell, Sharon [1 ]
Perez-Ramirez, Javier [1 ]
机构
[1] Swiss Fed Inst Technol, Dept Chem & Appl Biosci, Inst Chem & Bioengn, Vladimir Prelog Weg 1, CH-8093 Zurich, Switzerland
[2] Swiss Fed Inst Technol, Lab Phys Chem, Dept Chem & Appl Biosci, Vladimir Prelog Weg 2, CH-8093 Zurich, Switzerland
[3] Paul Scherrer Inst, Forsch Str 111, CH-5232 Villigen, Switzerland
基金
瑞士国家科学基金会;
关键词
MONOCLINIC TRANSFORMATION; HETEROGENEOUS CATALYSIS; HIGH-TEMPERATURE; X-RAY; OXIDE; ZIRCONIA; OPPORTUNITIES; DEFECTS; ZRO2; PD;
D O I
10.1038/s41467-022-33391-w
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Palladium promotion and deposition on monoclinic zirconia are effective strategies to boost the performance of bulk In2O3 in CO2-to-methanol and could unlock superior reactivity if well integrated into a single catalytic system. However, harnessing synergic effects of the individual components is crucial and very challenging as it requires precise control over their assembly. Herein, we present ternary Pd-In2O3-ZrO2 catalysts prepared by flame spray pyrolysis (FSP) with remarkable methanol productivity and improved metal utilization, surpassing their binary counterparts. Unlike established impregnation and co-precipitation methods, FSP produces materials combining low-nuclearity palladium species associated with In2O3 monolayers highly dispersed on the ZrO2 carrier, whose surface partially transforms from a tetragonal into a monoclinic-like structure upon reaction. A pioneering protocol developed to quantify oxygen vacancies using in situ electron paramagnetic resonance spectroscopy reveals their enhanced generation because of this unique catalyst architecture, thereby rationalizing its high and sustained methanol productivity. Assembling multicomponent catalysts to harness synergic effects is challenging. Now, flame spray pyrolysis permits the synthesis of ternary Pd-In2O3-ZrO2 catalysts with an optimal architecture and an enriched density of oxygen vacancies for maximal performance in CO2-based methanol synthesis.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] CO2 hydrogenation to methanol over the copper promoted In2O3 catalyst
    Rui Zou
    Chenyang Shen
    Kaihang Sun
    Xinbin Ma
    Zhuoshi Li
    Maoshuai Li
    Chang-Jun Liu
    Journal of Energy Chemistry, 2024, 93 (06) : 135 - 145
  • [32] CO2 hydrogenation to methanol over the copper promoted In2O3 catalyst
    Zou, Rui
    Shen, Chenyang
    Sun, Kaihang
    Ma, Xinbin
    Li, Zhuoshi
    Li, Maoshuai
    Liu, Chang-Jun
    JOURNAL OF ENERGY CHEMISTRY, 2024, 93 : 135 - 145
  • [33] Sulfur vacancy-rich MoS2 as a catalyst for the hydrogenation of CO2 to methanol
    Jingting Hu
    Liang Yu
    Jiao Deng
    Yong Wang
    Kang Cheng
    Chao Ma
    Qinghong Zhang
    Wu Wen
    Shengsheng Yu
    Yang Pan
    Jiuzhong Yang
    Hao Ma
    Fei Qi
    Yongke Wang
    Yanping Zheng
    Mingshu Chen
    Rui Huang
    Shuhong Zhang
    Zhenchao Zhao
    Jun Mao
    Xiangyu Meng
    Qinqin Ji
    Guangjin Hou
    Xiuwen Han
    Xinhe Bao
    Ye Wang
    Dehui Deng
    Nature Catalysis, 2021, 4 : 242 - 250
  • [34] Carbon-Modified CuO/ZnO Catalyst with High Oxygen Vacancy for CO2 Hydrogenation to Methanol
    Ye, Haichuan
    Na, Wei
    Gao, Wengui
    Wang, Hua
    ENERGY TECHNOLOGY, 2020, 8 (06)
  • [35] Sulfur vacancy-rich MoS2 as a catalyst for the hydrogenation of CO2 to methanol
    Hu, Jingting
    Yu, Liang
    Deng, Jiao
    Wang, Yong
    Cheng, Kang
    Ma, Chao
    Zhang, Qinghong
    Wen, Wu
    Yu, Shengsheng
    Pan, Yang
    Yang, Jiuzhong
    Ma, Hao
    Qi, Fei
    Wang, Yongke
    Zheng, Yanping
    Chen, Mingshu
    Huang, Rui
    Zhang, Shuhong
    Zhao, Zhenchao
    Mao, Jun
    Meng, Xiangyu
    Ji, Qinqin
    Hou, Guangjin
    Han, Xiuwen
    Bao, Xinhe
    Wang, Ye
    Deng, Dehui
    NATURE CATALYSIS, 2021, 4 (03) : 242 - +
  • [36] A combined experimental and DFT study of H2O effect on In2O3/ZrO2 catalyst for CO2 hydrogenation to methanol
    Jiang, Xiao
    Nie, Xiaowa
    Gong, Yutao
    Moran, Colton M.
    Wang, Jianyang
    Zhu, Jie
    Chang, Huibin
    Guo, Xinwen
    Walton, Krista S.
    Song, Chunshan
    JOURNAL OF CATALYSIS, 2020, 383 : 283 - 296
  • [37] CO2 Hydrogenation to Methanol in a Slurry Reactor: Catalytic Performance of CuO-Enhanced In2O3/ZrO2
    Guan, Jingyuan
    Saherwala, Arav
    Vijayakumar, Varshiga
    Pjontek, Dominic
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2024, 63 (04) : 1814 - 1825
  • [38] Active Oxygen Vacancy Site for Methanol Synthesis from CO2 Hydrogenation on In2O3(110): A DFT Study
    Ye, Jingyun
    Liu, Changjun
    Mei, Donghai
    Ge, Qingfeng
    ACS CATALYSIS, 2013, 3 (06): : 1296 - 1306
  • [39] Improvement in the activity of Ni/In2O3 with the addition of ZrO2 for CO2 hydrogenation to methanol
    Zhang, Zhitao
    Shen, Chenyang
    Sun, Kaihang
    Liu, Chang-Jun
    CATALYSIS COMMUNICATIONS, 2022, 162
  • [40] Ternary synergistic interaction of Cu-ZnO-ZrO2 promoting CO2 hydrogenation to methanol
    Luo, Pengcheng
    Shi, Peixiang
    Yan, Zhiqiang
    Han, Jiahao
    Wang, Jingjing
    Li, Yanchun
    Ban, Hongyan
    Cai, Weijie
    Li, Congming
    APPLIED CATALYSIS A-GENERAL, 2025, 689