Search Results - "Zheng, Lirong"

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  1. 1

    The Solid‐Phase Synthesis of an Fe‐N‐C Electrocatalyst for High‐Power Proton‐Exchange Membrane Fuel Cells by Liu, Qingtao, Liu, Xiaofang, Zheng, Lirong, Shui, Jianglan

    Published in Angewandte Chemie International Edition (26-01-2018)
    “…The environmentally friendly synthesis of highly active Fe‐N‐C electrocatalysts for proton‐exchange membrane fuel cells (PEMFCs) is desirable but remains…”
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  2. 2

    Electrocatalytic upcycling of polyethylene terephthalate to commodity chemicals and H2 fuel by Zhou, Hua, Ren, Yue, Li, Zhenhua, Xu, Ming, Wang, Ye, Ge, Ruixiang, Kong, Xianggui, Zheng, Lirong, Duan, Haohong

    Published in Nature communications (17-08-2021)
    “…Plastic wastes represent a largely untapped resource for manufacturing chemicals and fuels, particularly considering their environmental and biological…”
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  3. 3

    Boosting oxygen evolution of single-atomic ruthenium through electronic coupling with cobalt-iron layered double hydroxides by Li, Pengsong, Wang, Maoyu, Duan, Xinxuan, Zheng, Lirong, Cheng, Xiaopeng, Zhang, Yuefei, Kuang, Yun, Li, Yaping, Ma, Qing, Feng, Zhenxing, Liu, Wen, Sun, Xiaoming

    Published in Nature communications (12-04-2019)
    “…Single atom catalyst, which contains isolated metal atoms singly dispersed on supports, has great potential for achieving high activity and selectivity in…”
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  4. 4

    A Mn-N3 single-atom catalyst embedded in graphitic carbon nitride for efficient CO2 electroreduction by Feng, Jiaqi, Gao, Hongshuai, Zheng, Lirong, Chen, Zhipeng, Zeng, Shaojuan, Jiang, Chongyang, Dong, Haifeng, Liu, Licheng, Zhang, Suojiang, Zhang, Xiangping

    Published in Nature communications (28-08-2020)
    “…Developing effective catalysts based on earth abundant elements is critical for CO 2 electroreduction. However, simultaneously achieving a high Faradaic…”
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  5. 5

    Alcohols electrooxidation coupled with H2 production at high current densities promoted by a cooperative catalyst by Li, Zhenhua, Yan, Yifan, Xu, Si-Min, Zhou, Hua, Xu, Ming, Ma, Lina, Shao, Mingfei, Kong, Xianggui, Wang, Bin, Zheng, Lirong, Duan, Haohong

    Published in Nature communications (10-01-2022)
    “…Electrochemical alcohols oxidation offers a promising approach to produce valuable chemicals and facilitate coupled H 2 production. However, the corresponding…”
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  6. 6
  7. 7

    Sustainable production of benzene from lignin by Meng, Qinglei, Yan, Jiang, Wu, Ruizhi, Liu, Huizhen, Sun, Yang, Wu, NingNing, Xiang, Junfeng, Zheng, Lirong, Zhang, Jing, Han, Buxing

    Published in Nature communications (26-07-2021)
    “…Benzene is a widely used commodity chemical, which is currently produced from fossil resources. Lignin, a waste from lignocellulosic biomass industry, is the…”
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  8. 8

    Copper atom-pair catalyst anchored on alloy nanowires for selective and efficient electrochemical reduction of CO2 by Jiao, Jiqing, Lin, Rui, Liu, Shoujie, Cheong, Weng-Chon, Zhang, Chao, Chen, Zheng, Pan, Yuan, Tang, Jianguo, Wu, Konglin, Hung, Sung-Fu, Chen, Hao Ming, Zheng, Lirong, Lu, Qi, Yang, Xuan, Xu, Bingjun, Xiao, Hai, Li, Jun, Wang, Dingsheng, Peng, Qing, Chen, Chen, Li, Yadong

    Published in Nature chemistry (01-03-2019)
    “…The electrochemical reduction of CO 2 could play an important role in addressing climate-change issues and global energy demands as part of a carbon-neutral…”
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  9. 9

    In-situ spectroscopic observation of dynamic-coupling oxygen on atomically dispersed iridium electrocatalyst for acidic water oxidation by Su, Hui, Zhou, Wanlin, Zhou, Wu, Li, Yuanli, Zheng, Lirong, Zhang, Hui, Liu, Meihuan, Zhang, Xiuxiu, Sun, Xuan, Xu, Yanzhi, Hu, Fengchun, Zhang, Jing, Hu, Tiandou, Liu, Qinghua, Wei, Shiqiang

    Published in Nature communications (21-10-2021)
    “…Uncovering the dynamics of active sites in the working conditions is crucial to realizing increased activity, enhanced stability and reduced cost of oxygen…”
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  10. 10

    Regulating Photocatalysis by Spin-State Manipulation of Cobalt in Covalent Organic Frameworks by Gong, Yun-Nan, Zhong, Wenhui, Li, Yang, Qiu, Yunze, Zheng, Lirong, Jiang, Jun, Jiang, Hai-Long

    Published in Journal of the American Chemical Society (30-09-2020)
    “…While catalysis is highly dependent on the electronic structure of the catalyst, the understanding of catalytic performance affected by electron spin…”
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  11. 11
  12. 12

    Iron atom–cluster interactions increase activity and improve durability in Fe–N–C fuel cells by Wan, Xin, Liu, Qingtao, Liu, Jieyuan, Liu, Shiyuan, Liu, Xiaofang, Zheng, Lirong, Shang, Jiaxiang, Yu, Ronghai, Shui, Jianglan

    Published in Nature communications (26-05-2022)
    “…Simultaneously increasing the activity and stability of the single-atom active sites of M–N–C catalysts is critical but remains a great challenge. Here, we…”
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  13. 13

    Carbon dioxide electroreduction to C2 products over copper-cuprous oxide derived from electrosynthesized copper complex by Zhu, Qinggong, Sun, Xiaofu, Yang, Dexin, Ma, Jun, Kang, Xinchen, Zheng, Lirong, Zhang, Jing, Wu, Zhonghua, Han, Buxing

    Published in Nature communications (26-08-2019)
    “…Efficient electroreduction of carbon dioxide to multicarbon products in aqueous solution is of great importance and challenging. Unfortunately, the low…”
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  14. 14
  15. 15

    Active Site Dependent Reaction Mechanism over Ru/CeO2 Catalyst toward CO2 Methanation by Wang, Fei, He, Shan, Chen, Hao, Wang, Bin, Zheng, Lirong, Wei, Min, Evans, David G, Duan, Xue

    Published in Journal of the American Chemical Society (18-05-2016)
    “…Oxygen vacancy on the surface of metal oxides is one of the most important defects which acts as the reactive site in a variety of catalytic reactions. In this…”
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  16. 16

    Stabilizing platinum atoms on CeO2 oxygen vacancies by metal-support interaction induced interface distortion: Mechanism and application by Jiang, Zeyu, Jing, Meizan, Feng, Xiangbo, Xiong, Jingchao, He, Chi, Douthwaite, Mark, Zheng, Lirong, Song, Weiyu, Liu, Jian, Qu, Zhiguo

    Published in Applied catalysis. B, Environmental (05-12-2020)
    “…[Display omitted] •The stabilization mechanism of single atom Pt1-CeO2 materials was proposed.•The Pt-O-Ce interface distortion balanced the Fermi energy level…”
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  17. 17

    A Single‐Atom Nanozyme for Wound Disinfection Applications by Xu, Bolong, Wang, Hui, Wang, Weiwei, Gao, Lizeng, Li, Shanshan, Pan, Xueting, Wang, Hongyu, Yang, Hailong, Meng, Xiangqin, Wu, Qiuwen, Zheng, Lirong, Chen, Shenming, Shi, Xinghua, Fan, Kelong, Yan, Xiyun, Liu, Huiyu

    Published in Angewandte Chemie International Edition (01-04-2019)
    “…Single‐atom catalysts (SACs), as homogeneous catalysts, have been widely explored for chemical catalysis. However, few studies focus on the applications of…”
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  18. 18

    Edge Computing Based IoT Architecture for Low Cost Air Pollution Monitoring Systems: A Comprehensive System Analysis, Design Considerations & Development by Idrees, Zeba, Zou, Zhuo, Zheng, Lirong

    Published in Sensors (Basel, Switzerland) (10-09-2018)
    “…With the swift growth in commerce and transportation in the modern civilization, much attention has been paid to air quality monitoring, however existing…”
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  19. 19

    Isolated Single Iron Atoms Anchored on N‐Doped Porous Carbon as an Efficient Electrocatalyst for the Oxygen Reduction Reaction by Chen, Yuanjun, Ji, Shufang, Wang, Yanggang, Dong, Juncai, Chen, Wenxing, Li, Zhi, Shen, Rongan, Zheng, Lirong, Zhuang, Zhongbin, Wang, Dingsheng, Li, Yadong

    Published in Angewandte Chemie International Edition (06-06-2017)
    “…The development of low‐cost, efficient, and stable electrocatalysts for the oxygen reduction reaction (ORR) is desirable but remains a great challenge. Herein,…”
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  20. 20

    Controlling N-doping type in carbon to boost single-atom site Cu catalyzed transfer hydrogenation of quinoline by Zhang, Jian, Zheng, Caiyan, Zhang, Maolin, Qiu, Yajun, Xu, Qi, Cheong, Weng-Chon, Chen, Wenxing, Zheng, Lirong, Gu, Lin, Hu, Zhengpeng, Wang, Dingsheng, Li, Yadong

    Published in Nano research (01-11-2020)
    “…Single-atom site (SA) catalysts on N-doped carbon (CN) materials exhibit prominent performance for their active sites being M-N x . Due to the commonly random…”
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