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  • Boosting oxygen evolution o... Boosting oxygen evolution of single-atomic ruthenium through electronic coupling with cobalt-iron layered double hydroxides
    Li, Pengsong; Wang, Maoyu; Duan, Xinxuan ... Nature communications, 04/2019, Volume: 10, Issue: 1
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    Open access

    Single atom catalyst, which contains isolated metal atoms singly dispersed on supports, has great potential for achieving high activity and selectivity in hetero-catalysis and electrocatalysis. ...
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  • Stable, high-performance, d... Stable, high-performance, dendrite-free, seawater-based aqueous batteries
    Tian, Huajun; Li, Zhao; Feng, Guangxia ... Nature communications, 01/2021, Volume: 12, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Metal anode instability, including dendrite growth, metal corrosion, and hetero-ions interference, occurring at the electrolyte/electrode interface of aqueous batteries, are among the most critical ...
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  • Ultrahigh-Loading of Ir Sin... Ultrahigh-Loading of Ir Single Atoms on NiO Matrix to Dramatically Enhance Oxygen Evolution Reaction
    Wang, Qi; Huang, Xiang; Zhao, Zhi Liang ... Journal of the American Chemical Society, 04/2020, Volume: 142, Issue: 16
    Journal Article
    Peer reviewed

    Engineering single-atom electrocatalysts with high-loading amount holds great promise in energy conversion and storage application. Herein, we report a facile and economical approach to achieve an ...
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  • Unveiling Active Sites of C... Unveiling Active Sites of CO2 Reduction on Nitrogen-Coordinated and Atomically Dispersed Iron and Cobalt Catalysts
    Pan, Fuping; Zhang, Hanguang; Liu, Kexi ... ACS catalysis, 04/2018, Volume: 8, Issue: 4
    Journal Article
    Peer reviewed

    Herein, we report the exploration of understanding the reactivity and structure of atomically dispersed M–N4 (M = Fe and Co) sites for the CO2 reduction reaction (CO2RR). Nitrogen coordinated Fe or ...
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  • Single Atomic Iron Catalyst... Single Atomic Iron Catalysts for Oxygen Reduction in Acidic Media: Particle Size Control and Thermal Activation
    Zhang, Hanguang; Hwang, Sooyeon; Wang, Maoyu ... Journal of the American Chemical Society, 10/2017, Volume: 139, Issue: 40
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    Peer reviewed
    Open access

    It remains a grand challenge to replace platinum group metal (PGM) catalysts with earth-abundant materials for the oxygen reduction reaction (ORR) in acidic media, which is crucial for large-scale ...
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  • Structural defects on conve... Structural defects on converted bismuth oxide nanotubes enable highly active electrocatalysis of carbon dioxide reduction
    Gong, Qiufang; Ding, Pan; Xu, Mingquan ... Nature communications, 06/2019, Volume: 10, Issue: 1
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    Open access

    Formic acid (or formate) is suggested to be one of the most economically viable products from electrochemical carbon dioxide reduction. However, its commercial viability hinges on the development of ...
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  • Active sites of copper-comp... Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reduction
    Weng, Zhe; Wu, Yueshen; Wang, Maoyu ... Nature communications, 01/2018, Volume: 9, Issue: 1
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    Restructuring-induced catalytic activity is an intriguing phenomenon of fundamental importance to rational design of high-performance catalyst materials. We study three copper-complex materials for ...
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  • Security Enhancements for M... Security Enhancements for Mobile Ad Hoc Networks With Trust Management Using Uncertain Reasoning
    Zhexiong Wei; Tang, Helen; Yu, F. Richard ... IEEE transactions on vehicular technology, 2014-Nov., 2014-11-00, 20141101, Volume: 63, Issue: 9
    Journal Article
    Peer reviewed

    The distinctive features of mobile ad hoc networks (MANETs), including dynamic topology and open wireless medium, may lead to MANETs suffering from many security vulnerabilities. In this paper, using ...
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  • Nitrogen‐Coordinated Single... Nitrogen‐Coordinated Single Cobalt Atom Catalysts for Oxygen Reduction in Proton Exchange Membrane Fuel Cells
    Wang, Xiao Xia; Cullen, David A.; Pan, Yung‐Tin ... Advanced materials (Weinheim) 30, Issue: 11
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    Open access

    Due to the Fenton reaction, the presence of Fe and peroxide in electrodes generates free radicals causing serious degradation of the organic ionomer and the membrane. Pt‐free and Fe‐free cathode ...
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