论文著作:
[1] Wang, Guangming; Chen, Junnan; Qu, Ye; Dong, Yingjun; Wang, Keting; Qian, Lihua; Fu, Rong; Zhang, Ying*; Cheng, Hui-Ming*; Zhang, Xiaolong*. Integrated Cu electrodes with controllable mesopores for CO2-to-C2H4 electrosynthesis. Appl. Catal. B: Environ., 2026, 385, 126316.
[2] Mao, Junjun; Wang, Dan; Zhang, Chenchen; Xie, Yuanming; Song, Qingqing; Zhang, Bo; Lou, Yang; Pan, Chengsi; Zhang, Jiawei*; Zhang, Ying*; Zhu, Yongfa. Upcycling CO2 into succinic acid (C4H6O4) by cascading CO2 electroreduction with electrocarboxylation. Chem Catalysis, 2025, 5, 9, 101415.
[3]Song, Qingqing; Li, Feng*; Xu, Aoni; Zhang, Chenchen; Xie, Yuanming; Mao, Junjun; Zhang, Ying*; Zhao, Yong*. Proton-Tuned Surface Chemistry Promotes Multicarbon Formation in Acidic CO2 Electroreduction. J. Phys. Chem. Lett., 2025, 16, 10499-10505.
[4] Huang, Pu; He, Bingling; Dong, Yuming; Zhou, Jing; Xu, Jing; Pan, Chengsi; Lou, Yang; Wang, Yao; Zhang, Ying*; Huang, Hongwen*; Zhang, Jiawei*. Preferentially stabilizing the watershed intermediates by adsorbate-adsorbate interaction to accelerate CO2 electroreduction to ethanol. Adv. Funct. Mater., 2025, 35, 2424583.
[5] Zhang, Ying*; Zhang, Chenchen; Chen, Chaofeng; Mao, Junjun; Song, Qingqing; Xie, Yuanming; Zhu, Yongfa*. The synergistic effect of organic molecules with copper anode material lowers the overall voltage for neutral CO2RR. Nano Research, 2025, 18, 94907555.
[6] Zhang, Yiguo;Xie,Yuanming;Liu,Haibo;Zhu, Chenxing;Lou,Yang*;Pan,Chengsi*; Zhu, Yongfa; Zhang,Ying*. Enhanced Adsorption of NiNb Bimetallic Catalyst for CO2 Intermediates Facilitates the 100% Selective Dicarboxylation. Small, 2026, 10.1002/smll.202514380.
[7] Xie, Yuanming; Wang, Xinlin; Mao, Junjun; Zhang, Chenchen; Song, Qingqing; Murayama, Toru; Lin, Mingyue*; Zhang, Jiawei; Lou, Yang; Pan, Chengsi; Zhang, Ying*; Zhu, Yongfa. Nanocrystalline high-dimensional Nb2O5 for efficient electroreductive dicarboxylation of CO2 with cycloalkane. ACS Catalysis, 2024, 14, 18624.
[8] Zhang, Ying*; Mao, Junjun; Zhang, Bo; Wang, Dan; Zhang, Chenchen; Lou, Yang; Pan, Chengsi; Zhu, Yongfa. Synergistic effects of Co-Fe boosts the transformation of CO2 into C6+ dicarboxylic acids up to gram-scale under mild conditions. ACS Catalysis, 2024, 14, 1459.
[9] Wang, Dan; Gui, Jianing; Pan, Binbin; Li, Mengxuan; Kuang, Yun; Zhang, Chenchen; Mao, Junjun; Lou, Yang; Pan, Chengsi; Li, Fengwang; Li, Yanguang; Wang, Yuhang*; Zhu, Yongfa*; Zhang, Ying*. Multi-microenvironment synergistically promoting CO2 electroreduction activity on porous Cu nanosheets. Appl. Catal. B: Environ., 2023, 322, 122119.
[10] Wang, Dan; Mao, Junjun; Zhang, Chenchen; Zhang, Jiawei; Li, Junshan; Zhang, Ying*; Zhu, Yongfa*. Modulating microenvironments to enhance CO2 electroreduction performance. eScience, 2023, 3, 100119.
[11] Zhu, Jiawei*; Wang, Yanying; Zhi, Aomiao; Chen, Zitao; Shi, Lei; Zhang, Zhenbao; Zhang, Yu; Zhu, Yinlong; Qiu, Xiaoyu; Tian, Xuezeng; Bai, Xuedong; Zhang, Ying*; Zhu, Yongfa*. Cation-deficiency-dependent CO2 electroreduction over copper-based ruddlesden-popper perovskite oxides. Angew. Chem. Int. Ed., 2021, 61, e202111670.
[12] Wang, Dan; Chang, Kuan; Zhang, Yaning; Wang, Yanying; Liu, Qixin; Wang, Zhenlin; Ding, Ding; Cui, Yi; Pan, Chengsi; Lou, Yang; Zhu, Yongfa*; Zhang, Ying*. Unravelling the electrocatalytic activity of bismuth nanosheets towards carbon dioxide reduction: edge plane versus basal plane. Appl. Catal. B: Environ., 2021, 299, 120396.
[13] Zhang, Ying; Zhang, Xiaolong; Lin, Yunzhi; Li, Fengwang; Bond, Alan M.*; Zhang, Jie*. Controllable synthesis of few-layer bismuth subcarbonate by electrochemical exfoliation for enhanced CO2 reduction performance. Angew. Chem. Int. Ed., 2018, 57, 13283.