• 21.

    Dinuclear metal synergistic catalysis for energy conversion

    Di-Chang Zhong+, Yun-Nan Gong+, Chao Zhang+, and Tong-Bu Lu*

    Chem. Soc. Rev., 2023, 52, 3170-3214. LINK

     

    20.

    Broadband sensory networks with locally stored responsivities for neuromorphic machine vision

    Guo-Xin Zhang+, Zhi-Cheng Zhang+, Xu-Dong Chen*, Lixing Kang, Yuan Li, Fu-Dong Wang, Lei Shi, Ke Shi, Zhi-Bo Liu, Jian-Guo Tian, Tong-Bu Lu*, Jin Zhang*

    Sci. Adv., 2023, 9, eadi5104.  LINK 

    19.

    Constructing asymmetric double-atomic sites for synergistic catalysis of electrochemical CO2 reduction

    Jiqing Jiao*,+, Qing Yuan+, Meijie Tan, Xiaoqian Han, Mingbing Gao, Chao Zhang, Xuan Yang*, Zhaolin Shi, Yanbin Ma, Hai Xiao, Jiangwei Zhang*, Tongbu Lu*

    Nat. Commun., 2023, 14, 6164.  LINK


    18.

    Coupling electrochemical CO2 reduction with value-added anodic oxidation reactions: Progress and challenges

    Yu Li and Tong-Bu Lu*

    Mater. Chem. Front., 2023, 8, 341-353.  LINK 

    17.

    Bidirectional host-guest interactions promote selective photocatalytic CO2 reduction coupled with alcohol oxidation in aqueous solution

    Wen Zhang, Cai-Cai Song, Jia-Wei Wang, Shu-Ting Cai, Meng-Yu Gao, You-Xiang Feng, Tong-Bu Lu*

    Chin. J. Catal., 2023, 52, 176-186.  LINK 

    16.

    Two-Dimensional Carbon Graphdiyne: Advances in Fundamental and Application Research

    Xuchen Zheng, Siao Chen, Jinze Li, Han Wu, Chao Zhang, Danyan Zhang, Xi Chen, Yang Gao, Feng He, Lan Hui, Huibiao Liu, Tonggang Jiu, Ning Wang, Guoxing Li, Jialiang Xu, Yurui Xue,* Changshui Huang,* Chunying Chen,* Yanbing Guo,* Tong-Bu Lu,* Dan Wang,* Lanqun Mao,* Jin Zhang,* Yue Zhang,* Lifeng Chi,* Wanlin Guo,* Xian-He Bu,* Hongjie Zhang,* Liming Dai,* Yuliang Zhao,* and Yuliang Li*

    ACS Nano, 2023, 17, 14309-14346.  LINK  


     

    15.

    Designing dual-atom cobalt catalysts anchored on amino-functionalized MOFs for efficient CO2 photoreduction

    Meng-Ting Ming, Yu-Chen Wang, Wei-Xue Tao, Wen-Jie Shi,* Di-Chang Zhong* and Tong-Bu Lu*

    Green Chem., 2023, 25, 6207-6211.  LINK 

    14.

    Synergy of Surface Phosphates and Oxygen Vacancies Enables Efficient Photocatalytic Methane Conversion at Room Temperature

    Xin-Ke Zhou, Yu Li,* Pei-Pei Luo, and Tong-Bu Lu*

    ACS App. Mater. Interfaces, 2023, 15, 36280-36288.  LINK

    13.

    A cobalt metalized polymer modulates the electronic structure of Pt nanoparticles to accelerate water dissociation kinetics

    Xiaomei Hu, Weixue Tao, Wenjie Shi*, Dichang Zhong* and Tong-Bu Lu*

    Chem. Commun., 2023, 59, 8222.  LINK

     

    12.

    Lead-free halide perovskite hollow nanospheres to boost photocatalytic activity for CO2 reduction

    Yan-Fei Mu, Jin-Shuang Zhao, Li-Yuan Wu, Ke-Ying Tao, Zhao-Lei Liu, Fu-Quan Bai, Di-Chang Zhong* , Min Zhang*, Tong-Bu Lu*

    Appl. Catal. B: Environ. Energy, 2023, 338, 123024.  LINK 

     

    11.

    Recent progress in neuromorphic and memory devices based on graphdiyne

    Zhi-Cheng Zhang, Xu-Dong Chen* & Tong-Bu Lu

    Sci. Technol. Adv. Mater., 2023, 24, 2196240.  LINK 

    10.

    Highly Selective Photosynthesis of Formic Acid by Unifying the Products of CO2 Reduction and Methanol Oxidation

    Zhao-Lei Liu, Meng-Ran Zhang, Guang-Xing Dong, Min Zhang,* and Tong-Bu Lu

    Sol. RRL 2023, 2300300.  LINK

    9.

    Visible-light-driven and selective methane conversion to oxygenates with air on a halide perovskite-based photocatalyst under mild conditions

    Guang-Xing Dong, Meng-Ran Zhang, Ke Su, Zhao-Lei Liu, Min Zhangg* and Tong-Bu Lu*

    J. Mater. Chem. A, 2023, 11, 9989-9999.  LINK 

    8.

    Nanoscale Janus Z-Scheme Heterojunction for Boosting Artificial Photosynthesis

    Ke Su, Su-Xian Yuan, Li-Yuan Wu, Zhao-Lei Liu, Min Zhang,* and Tong-Bu Lu*

    Small, 2023,19, 2301192.  LINK 

     

    7.

    A template co-pyrolysis strategy towards the increase of amino/imino content within g-C3N4 for efficient CO2 photoreduction

    Ke-Ying Tao, Kuo Yuan, Wei Yang, Di-Chang Zhong*, Tong-Bu Lu*

    Chem. Eng. J., 2023, 455, 140630.  LINK

    6.

    Low-loading gold in situ doped with sulfur by biomolecule-assisted approach for promoted electrochemical carbon dioxide reduction

    Meijie Tan, Xiaoqian Han, Sen Ru, Chao Zhang, Zhouru Ji, Zhaolin Shi , Guomeng Qiao, Yunying Wang, Ruixue Cui, Qiquan Luo*, Jiqing Jiao*, Yaguang Li, and Tongbu Lu

    Nano Res., 2023, 16, 2059-2064.  LINK

     

    5.

    Lattice-matched in-situ construction of 2D/2D T-SrTiO3/CsPbBr3 heterostructure for efficient photocatalysis of CO2 reduction

    Su-Xian Yuan, Ke Su, You-Xiang Feng, Min Zhang*, Tong-Bu Lu

    Chin. Chem. Lett., 2023, 34, 107682.  LINK

    4.

    Metal-organic layers: Preparation and applications

    Huifeng Wang, Chao Zhang , Baoxia Dong, Dichang Zhong* and Tongbu Lu*

    Sci. China Mater., 2023, 66, 839-858.  LINK

     

    3.

    Ultrathin metal−organic layers/carbon nitride nanosheet composites as 2D/2D heterojunctions for efficient CO2 photoreduction

    Wei Yang, Xiao Lin, Wen-Jie Shi, Ji-Hong Zhang, Yu-Chen Wang, Ji-Hua Deng,* Di-Chang Zhong* and Tong-Bu Lu*

    J. Mater. Chem. A, 2023, 11, 2225-2232.  LINK

    2.

    Ligand-free CsPbBr3 with calliandra-like nanostructure for efficient artificial photosynthesis

    Yan-Fei Mu, Hui-Ling Liu, Meng-Ran Zhang, Hong-Juan Wang, Min Zhang,* Tong-Bu Lu*

    J. Energy Chem., 2023, 77, 317-325.  LINK

    1.

    Controlled synthesis of a Ni2 dual-atom catalyst for synergistic CO2 electroreduction

    Xiang-Ming Liang, Hong-Juan Wang, Chao Zhang, Di-Chang Zhong, Tong-Bu Lu*

    Applied Catalysis B: Environmental, 2023, 322, 122073.  LINK


天津理工大学    新能源材料与低碳技术研究院    鲁统部课题组

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