Metal-organicframeworkswithdinuclearmetalcentersforsynergisticallyboostingCO2photoreduction<iclass="icon-zqcb"></i>

被引:0
|
作者
HuiFeng Wang [1 ,2 ]
WenJie Shi [2 ]
YuXin Yang [2 ]
BaoXia Dong [1 ]
TongBu Lu [2 ]
DiChang Zhong [2 ]
机构
[1] School of Chemistry and Chemical Engineering, Yangzhou University
[2] Institute for New Energy Materials and Low Carbon Technologies, School of Materials Science and Engineering, Tianjin University of
关键词
D O I
暂无
中图分类号
X701 [废气的处理与利用]; O643.36 [催化剂]; O644.1 [光化学];
学科分类号
摘要
Dinuclear metal synergistic catalysis (DMSC) has been proved powerful in boosting CO2reduction,while this has not been achieved in heterogeneous catalysts with long-range order structures.In this study,we,by introduction of metal catalytic centers into an indium-based metal-organic framework (MOF),obtained a series of isostructural In-MOFs,including three MOFs with mononuclear metal catalytic center (M-In),three MOFs with dinuclear homometallic catalytic centers (MM-In),and three MOFs with dinuclear heterometallic catalytic centers (MM’-In,M/M’=Co(II),Ni(II),Zn(II)).It was found that all these MOFs can serve as catalysts for photochemical CO2reduction to CO.Compared with M-In,the catalytic activities of MM-In were obviously enhanced,and that of MM’-In was further significantly enhanced.For example,the CO yield of Co Zn-In reaches a record value of 12,700μmol g-1h-1,which is 4.0,8.1,9.4,and 18.6-fold higher than that of Co Co-In,Zn Zn-In,Co-In,and Zn-In,respectively.Similarly,the catalytic activities of Co Ni-In and Ni Zn-In also show different fold increase than those of corresponding dinuclear homometallic and mononuclear metallic MOFs.The results of control experiments and theoretical calculation reveal that the higher catalytic activities of MM-In over M-In can be ascribed to the DMSC effect,and the higher catalytic activity of MM’-In over MM-In can be ascribed to the strengthened DMSC effect.The work reveals the relationship between DMSC effect and bimetal centers in CO2reduction,which provides new insights into the DMSC and paves a new way to design highly active catalysts for photochemical CO2reduction.
引用
收藏
页码:201 / 208
页数:8
相关论文
共 50 条
  • [41] Stablecopperboron–imidazolatecageasCu-richedenzymeforhighlyefficientelectrocatalyticCO2reductiontoethylene<iclass="icon-zqcb"></i>
    Jun-Qiang Chen
    Qiao-Hong Li
    Qin-Long Hong
    Ping Shao
    Hai-Xia Zhang
    Jian Zhang
    Science China(Chemistry), 2025, 68 (03) : 943 - 950
  • [42] MoS2core-shellnanoparticlespreparedthroughliquid-phaseablationandlightexfoliationoffemtosecondlaserforchemicalsensing<iclass="icon-zqcb"></i>
    ZUO Pei
    JIANG Lan
    LI Xin
    TIAN MengYao
    YUAN YongJiu
    HAN WeiNa
    MA Le
    HU LiFei
    HE ZhiCong
    LI Fang
    Science China(Technological Sciences), 2023, 66 (03) : 853 - 862
  • [43] Single-atom-mediatedelectronislandsboostphotocatalyticCO2chemicalfixation<iclass="icon-zqcb"></i>
    Shu Shang
    Lei Li
    Xin He
    Hui Wang
    Lirong Zheng
    Wei Shao
    Xiaodong Zhang
    Yi Xie
    Science China(Chemistry), 2024, 67 (07) : 2292 - 2299
  • [44] Microwave-accelerateddirectregenerationofLiCoO2cathodesforLi-ionbatteries<iclass="icon-zqcb"></i>
    Xueshan Hu
    YunChao Yin
    Chao Li
    Lihui Zhou
    Lin Yang
    Yitian Feng
    Daxian Zuo
    Chenhui Ning
    Das Soham
    Sheng Dai
    Longbin Qiu
    Lin Zeng
    Haw Jiunn Woo
    Jiayu Wan
    Science China(Chemistry), 2024, (07) : 2181 - 2189
  • [45] High-selectivityelectroreductionoflow-concentrationCO2withlargeconcentrationfluctuation<iclass="icon-zqcb"></i>
    Mengyu Qi
    Yanbin Ma
    Chao Zhang
    Bingwei Li
    Xueqing Yang
    Zhaolin Shi
    Simeng Liu
    Changhua An
    Jiqing Jiao
    Tongbu Lu
    Science China(Chemistry), 2025, 68 (04) : 1620 - 1626
  • [46] AbifunctionalwoodmembranemodifiedbyMoS2/covalentorganicframeworkheterojunctionsforeffectivesolar-drivenwaterevaporationandcontaminantdegradation<iclass="icon-zqcb"></i>
    Ziwei Cui
    Jianfei Wu
    Haoran Li
    Yaning Xu
    Tiantian Wu
    Lixing Kang
    Qing Huang
    Yahui Cai
    Jianzhang Li
    Dan Tian
    Science China(Chemistry), 2024, 67 (06) : 2111 - 2120
  • [47] Microwave-accelerateddirectregenerationofLiCoO2cathodesforLi-ionbatteries<iclass="icon-zqcb"></i>
    Xueshan Hu
    YunChao Yin
    Chao Li
    Lihui Zhou
    Lin Yang
    Yitian Feng
    Daxian Zuo
    Chenhui Ning
    Das Soham
    Sheng Dai
    Longbin Qiu
    Lin Zeng
    Haw Jiunn Woo
    Jiayu Wan
    Science China(Chemistry), 2024, 67 (07) : 2181 - 2189
  • [48] HotdeformationbehaviorandmicrostructureevolutionofGH3536-TiB2compositesfabricatedbypowdermetallurgy<iclass="icon-zqcb"></i>
    ZHOU ShiPeng
    WANG Shuai
    HUANG LuJun
    ZHANG Rui
    CHEN Xin
    MENG FanChao
    CHEN Run
    SUN FengBo
    WANG CunYu
    GENG Lin
    Science China(Technological Sciences), 2024, (07) : 2107 - 2124
  • [49] SCAB1coordinatessequentialCa2+andABAsignalsduringosmoticstressinducedstomatalclosureinArabidopsis<iclass="icon-zqcb"></i>
    Tianren Zhang
    Li Bai
    Yan Guo
    Science China(Life Sciences), 2024, 67 (01) : 1 - 18
  • [50] OperandoreconstructiontowardsstableCuInanodotswithfavorablefacetsforselectiveCO2electroreductiontoC2H4<iclass="icon-zqcb"></i>
    Wenjie Xue
    Hongxia Liu
    Xinqing Chen
    Xiaoju Yang
    Ruoou Yang
    Youwen Liu
    Minghao Li
    Xuan Yang
    Bao Yu Xia
    Bo You
    Science China(Chemistry), 2023, 66 (06) : 1834 - 1843