Search Results - "Gong, Haisheng"

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  1. 1

    Constructing a Graphene-Encapsulated Amorphous/Crystalline Heterophase NiFe Alloy by Microwave Thermal Shock for Boosting the Oxygen Evolution Reaction by Gong, Zhichao, Liu, Rui, Gong, Haisheng, Ye, Gonglan, Liu, Jingjing, Dong, Juncai, Liao, Jiangwen, Yan, Minmin, Liu, Jianbin, Huang, Kang, Xing, Lingli, Liang, Junfei, He, Yongmin, Fei, Huilong

    Published in ACS catalysis (01-10-2021)
    “…Rationally designing efficient and robust catalysts for the oxygen evolution reaction (OER) is increasingly vital for energy conversion technologies. Herein,…”
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    Journal Article
  2. 2

    NiSe as an effective co-catalyst coupled with TiO2 for enhanced photocatalytic hydrogen evolution by Gong, Haisheng, Liu, Qiuwen, Huang, Caijin

    Published in International journal of hydrogen energy (22-02-2019)
    “…Construction of semiconductor heterojunctions can effectively accelerate the separation of photo-induced charge carriers and thereby enhance photocatalytic…”
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  3. 3

    Electronic Structure Regulation of Single‐Atom Catalysts for Electrochemical Oxygen Reduction to H2O2 by Liu, Jingjing, Gong, Zhichao, Yan, Minmin, He, Guanchao, Gong, Haisheng, Ye, Gonglan, Fei, Huilong

    “…Electrochemical synthesis of hydrogen peroxide (H2O2) via the 2‐electron oxygen reduction reaction (ORR) has emerged as a promising alternative to the…”
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    Journal Article
  4. 4

    NiSe2 Nanoparticles Grown in Situ on CdS Nanorods for Enhanced Photocatalytic Hydrogen Evolution by Chen, Zhaohui, Gong, Haisheng, Liu, Qiuwen, Song, Mingxia, Huang, Caijin

    Published in ACS sustainable chemistry & engineering (07-10-2019)
    “…The construction of heterojunction photocatalysts can accelerate the separation of photogenerated electron–hole pairs and thus improve the photocatalytic…”
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  5. 5

    In situ construction of NiSe/Mn0.5Cd0.5S composites for enhanced photocatalytic hydrogen production under visible light by Jiang, Xinwei, Gong, Haisheng, Liu, Qiuwen, Song, Mingxia, Huang, Caijin

    Published in Applied catalysis. B, Environmental (05-07-2020)
    “…[Display omitted] The well-matched structure between NiSe and Mn0.5Cd0.5S facilitates the charge transfer and prolongs the lifetime of photo-induced electrons,…”
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  6. 6

    General and Ultrafast Photothermal Synthesis of Atomic Metal‐Nitrogen‐Carbon Catalysts for H 2 O 2 Electrosynthesis by Gong, Haisheng, Gong, Zhichao, Liu, Jingjing, Ye, Gonglan, Fei, Huilong

    Published in Advanced functional materials (01-06-2024)
    “…Abstract Atomic metal‐nitrogen‐carbon catalysts (M‐N‐Cs) are promising electrocatalysts for the two‐electron oxygen reduction reaction (2e − ORR) for the green…”
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  7. 7

    Highly Durable and Efficient Seawater Electrolysis Enabled by Defective Graphene-Confined Nanoreactor by Gong, Zhichao, Liu, Jingjing, Yan, Minmin, Gong, Haisheng, Ye, Gonglan, Fei, Huilong

    Published in ACS nano (26-09-2023)
    “…Direct seawater electrolysis is a promising technology for massive green hydrogen production but is limited by the lack of durable and efficient…”
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  8. 8

    Low‐Coordinated CoNC on Oxygenated Graphene for Efficient Electrocatalytic H2O2 Production by Gong, Haisheng, Wei, Zengxi, Gong, Zhichao, Liu, Jingjing, Ye, Gonglan, Yan, Minmin, Dong, Juncai, Allen, Christopher, Liu, Jianbin, Huang, Kang, Liu, Rui, He, Guanchao, Zhao, Shuangliang, Fei, Huilong

    Published in Advanced functional materials (01-01-2022)
    “…Electrochemical H2O2 production through the 2‐electron oxygen reduction reaction (ORR) is a promising alternative to the energy‐intensive anthraquinone…”
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  9. 9

    Design of Aligned Porous Carbon Films with Single‐Atom Co–N–C Sites for High‐Current‐Density Hydrogen Generation by Liu, Rui, Gong, Zhichao, Liu, Jianbin, Dong, Juncai, Liao, Jiangwen, Liu, Huan, Huang, Haikang, Liu, Jingjing, Yan, Minmin, Huang, Kang, Gong, Haisheng, Zhu, Jian, Cui, Chunyu, Ye, Gonglan, Fei, Huilong

    Published in Advanced materials (Weinheim) (01-10-2021)
    “…Metal‐ and nitrogen‐doped carbon (M–N–C) materials as a unique class of single‐atom catalysts (SACs) have increasingly attracted attention as the replacement…”
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  10. 10

    General and Ultrafast Photothermal Synthesis of Atomic Metal‐Nitrogen‐Carbon Catalysts for H2O2 Electrosynthesis by Gong, Haisheng, Gong, Zhichao, Liu, Jingjing, Ye, Gonglan, Fei, Huilong

    Published in Advanced functional materials (01-06-2024)
    “…Atomic metal‐nitrogen‐carbon catalysts (M‐N‐Cs) are promising electrocatalysts for the two‐electron oxygen reduction reaction (2e− ORR) for the green…”
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    Journal Article
  11. 11

    General Design of Aligned-Channel Porous Carbon Electrodes for Efficient High-Current-Density Gas-Evolving Electrocatalysis by Gong, Zhichao, Chen, Pengzhao, Gong, Haisheng, Huang, Kang, Ye, Gonglan, Fei, Huilong

    Published in Advanced materials (Weinheim) (01-10-2024)
    “…Gas-evolving reactions (GERs) are important in many electrochemical energy conversion technologies and chemical industries. The operation of GERs at high…”
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  12. 12

    Ultrafast Joule heating synthesis of hierarchically porous graphene-based Co-N-C single-atom monoliths by Xing, Lingli, Liu, Rui, Gong, Zhichao, Liu, Jingjing, Liu, Jianbin, Gong, Haisheng, Huang, Kang, Fei, Huilong

    Published in Nano research (01-05-2022)
    “…Herein, we develop a transient heating-quenching strategy triggered by Joule heating for the synthesis of single-atom cobalt- and nitrogen-doped graphene…”
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  13. 13

    NiSe/Cd0.5Zn0.5S Composite Nanoparticles for Use in p–n Heterojunction-Based Photocatalysts for Solar Energy Harvesting by Gong, Haisheng, Li, Zhuo, Chen, Zhaohui, Liu, Qiuwen, Song, Mingxia, Huang, Caijin

    Published in ACS applied nano materials (24-04-2020)
    “…Construction of semiconductor heterojunctions with matched energy band alignment is an efficient strategy to boost charge separation, thus raising…”
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  14. 14

    Iodine-Doping-Induced Electronic Structure Tuning of Atomic Cobalt for Enhanced Hydrogen Evolution Electrocatalysis by Liu, Jianbin, Wang, Dashuai, Huang, Kang, Dong, Juncai, Liao, Jiangwen, Dai, Sheng, Tang, Xuan, Yan, Minmin, Gong, Haisheng, Liu, Jingjing, Gong, Zhichao, Liu, Rui, Cui, Chunyu, Ye, Gonglan, Zou, Xiaolong, Fei, Huilong

    Published in ACS nano (23-11-2021)
    “…The development of strategies for tuning the electronic structure of the metal sites in single-atom catalysts (SACs) is the key to optimizing their activity…”
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  15. 15
  16. 16

    Electronic Structure Regulation of Single-Atom Catalysts for Electrochemical Oxygen Reduction to H 2 O 2 by Liu, Jingjing, Gong, Zhichao, Yan, Minmin, He, Guanchao, Gong, Haisheng, Ye, Gonglan, Fei, Huilong

    “…Electrochemical synthesis of hydrogen peroxide (H O ) via the 2-electron oxygen reduction reaction (ORR) has emerged as a promising alternative to the…”
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    Journal Article
  17. 17

    Water-dispersible boron phosphide nanosheets for enhancing the thermal conductivity of nanofluids by Li, Zhuo, Cheng, Chuchu, Gong, Haisheng, Liu, Qiuwen, Huang, Caijin

    Published in Journal of molecular liquids (01-07-2020)
    “…Boron phosphide (BP) has attracted much attention because of its outstanding physical and chemical properties. However, the poor dispersibility of BP in water…”
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  18. 18

    Ultrafast synthetic strategies under extreme heating conditions toward single-atom catalysts by He, Guanchao, Yan, Minmin, Gong, Haisheng, Fei, Huilong, Wang, Shuangyin

    “…Abstract Dispersing atomic metals on substrates provides an ideal method to maximize metal utilization efficiency, which is important for the production of…”
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  19. 19

    Low‐Coordinated CoNC on Oxygenated Graphene for Efficient Electrocatalytic H 2 O 2 Production by Gong, Haisheng, Wei, Zengxi, Gong, Zhichao, Liu, Jingjing, Ye, Gonglan, Yan, Minmin, Dong, Juncai, Allen, Christopher, Liu, Jianbin, Huang, Kang, Liu, Rui, He, Guanchao, Zhao, Shuangliang, Fei, Huilong

    Published in Advanced functional materials (01-01-2022)
    “…Abstract Electrochemical H 2 O 2 production through the 2‐electron oxygen reduction reaction (ORR) is a promising alternative to the energy‐intensive…”
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    Journal Article
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