Search Results - "Kong, Wenhan"

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  1. 1

    Recent advances of MXene as promising catalysts for electrochemical nitrogen reduction reaction by Sun, Jie, Kong, Wenhan, Jin, Zhaoyong, Han, Yaqian, Ma, Liangyu, Ding, Xiaoteng, Niu, Yusheng, Xu, Yuanhong

    Published in Chinese chemical letters (01-04-2020)
    “…MXene-based materials were suggested to be promising candidates for electrocatalytic nitrogen reduction due to their exceptional properties [Display omitted]…”
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  2. 2

    Composite polymer electrolyte reinforced by graphitic carbon nitride nanosheets for room-temperature all-solid-state lithium batteries by Han, Qingyue, Wang, Suqing, Kong, Wenhan, Ji, Bing, Wang, Haihui

    Published in Chinese journal of chemical engineering (01-02-2023)
    “…[Display omitted] By virtue of the flexibility and safety, polyethylene oxide (PEO) based electrolytes are regarded as an appealing candidate for…”
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  3. 3

    Sulfur defect-rich WS2−x nanosheet electrocatalysts for N2 reduction by Ma, Liangyu, Kong, Wenhan, Liu, Mengli, Jin, Zhaoyong, Han, Yaqian, Sun, Jie, Liu, Jie, Xu, Yuanhong, Li, Jinghong

    Published in Science China materials (01-08-2021)
    “…Seeking catalysts with high electrocatalytic activity for ambient-condition N 2 reduction reaction (NRR) remains an ongoing challenge due to the chemical…”
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  4. 4

    Land use changes to cash crop plantations: crop types, multilevel determinants and policy implications by Su, Shiliang, Zhou, Xiangcheng, Wan, Chen, Li, Yunke, Kong, Wenhan

    Published in Land use policy (01-01-2016)
    “…•Multilevel determinants of different cash crop types were quantified.•Combination of household survey and geospatial techniques was employed.•Cash cropping…”
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  5. 5

    Spinel LiMn2O4 Nanofiber: An Efficient Electrocatalyst for N2 Reduction to NH3 under Ambient Conditions by Li, Chengbo, Yu, Jiali, Yang, Li, Zhao, Jinxiu, Kong, Wenhan, Wang, Ting, Asiri, Abdullah M, Li, Quan, Sun, Xuping

    Published in Inorganic chemistry (05-08-2019)
    “…The production of ammonia (NH3) in the industrial scale basically relies on the traditional technology of Haber–Bosch, which is operated under harsh conditions…”
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  6. 6

    Realizing compatibility of high voltage cathode and poly (ethylene oxide) electrolyte in all-solid-state lithium batteries by bilayer electrolyte design by Han, Qingyue, Wang, Suqing, Kong, Wenhan, Ren, Wenhao, Liu, Yangxi, Wang, Haihui

    “…[Display omitted] •A bilayer PEO electrolyte with different lithium salts is constructed.•The design of bilayer electrolytes facilitates interfacial…”
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  7. 7

    Greatly Enhanced Electrocatalytic N2 Reduction on TiO2 via V Doping by Wu, Tongwei, Kong, Wenhan, Zhang, Ya, Xing, Zhe, Zhao, Jinxiu, Wang, Ting, Shi, Xifeng, Luo, Yonglan, Sun, Xuping

    Published in Small methods (13-11-2019)
    “…As a sustainable alternative technology to the Haber–Bosch process, electrochemical N2 reduction offers the hope of directly converting N2 to NH3 at ambient…”
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  8. 8

    Redox Mediator as Highly Efficient Charge Storage Electrode Additive for All‐Solid‐State Lithium Metal Batteries by Liu, Haixing, Wang, Suqing, Kong, Wenhan, Liu, Yangxi, Ren, Wenhao, Wang, Haihui

    Published in Advanced energy materials (06-11-2024)
    “…Abstract All‐solid‐state lithium metal batteries (ASSLBs) have the potential to provide a significant increase in energy density and safety. However, most…”
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  9. 9

    Stabilizing Li 1.3 Al 0.3 Ti 1.7 (PO 4 ) 3 |Li Metal Anode Interface in Solid‐State Batteries by Kevlar Aramid Nanofiber‐Based Protective Coating by Kong, Wenhan, Jiang, Zhouyang, Liu, Yangxi, Han, Qingyue, Ding, Liang‐Xin, Wang, Suqing, Wang, Haihui

    Published in Advanced functional materials (01-12-2023)
    “…Abstract Li 1.3 Al 0.3 Ti 1.7 (PO 4 ) 3 (LATP) solid‐state electrolyte has garnered considerable interest owing to its competitive room‐temperature Li‐ion…”
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  10. 10

    Li1.5Al0.5Ge1.5(PO4)3 membrane electrodialysis for lithium enrichment by Jiang, Zhouyang, Kong, Wenhan, Zhao, Fenglin, Han, Qingyue, Liu, Yangxi, Wang, Suqing, Wang, Haihui

    Published in Journal of membrane science (15-03-2023)
    “…Highly purified LiOH is a common raw material of cathode active materials of lithium-ion batteries. Its demand is rapidly increasing with the fast development…”
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  11. 11

    Multifunctional asymmetric electrolyte membrane encouraging durable lithium-metal batteries in wide temperature variations by Liu, Yangxi, Wang, Suqing, Jiang, Zhouyang, Kong, Wenhan, Han, Qingyue, Ding, Liang-Xin, Wang, Haihui

    Published in Journal of membrane science (05-07-2023)
    “…The progress of high-performance lithium-metal batteries (LMBs) has been greatly impeded by lithium dendrite growth and electrolyte performance defects…”
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  12. 12

    Stabilizing Li1.3Al0.3Ti1.7(PO4)3|Li Metal Anode Interface in Solid‐State Batteries by Kevlar Aramid Nanofiber‐Based Protective Coating by Kong, Wenhan, Jiang, Zhouyang, Liu, Yangxi, Han, Qingyue, Ding, Liang‐Xin, Wang, Suqing, Wang, Haihui

    Published in Advanced functional materials (08-12-2023)
    “…Li1.3Al0.3Ti1.7(PO4)3 (LATP) solid‐state electrolyte has garnered considerable interest owing to its competitive room‐temperature Li‐ion conductivity, air…”
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    Journal Article
  13. 13

    5.1 µm Ion‐Regulated Rigid Quasi‐Solid Electrolyte Constructed by Bridging Fast Li‐Ion Transfer Channels for Lithium Metal Batteries by Liu, Yangxi, Wang, Suqing, Chen, Weicheng, Kong, Wenhan, Wang, Shupei, Liu, Haixing, Ding, Li, Ding, Liang‐Xin, Wang, Haihui

    Published in Advanced materials (Weinheim) (01-07-2024)
    “…An ultra‐thin quasi‐solid electrolyte (QSE) with dendrite‐inhibiting properties is a requirement for achieving high energy density quasi‐solid lithium metal…”
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  14. 14

    One-step hydrothermal synthesis of fluorescent MXene-like titanium carbonitride quantum dots by Kong, Wenhan, Niu, Yusheng, Liu, Mengli, Zhang, Kaixiang, Xu, Gengfang, Wang, Yao, Wang, Xiwei, Xu, Yuanhong, Li, Jinghong

    Published in Inorganic chemistry communications (01-07-2019)
    “…MXenes quantum dots (QDs) are a newly emerging family of nano-size transition metal carbides or nitrides or carbonitrides. Rapid development of MXene till now…”
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  15. 15

    Rational design of FeS2 microspheres as high-performance catalyst for electrooxidation of hydrazine by Sun, Jie, Liu, Chuangwei, Kong, Wenhan, Liu, Jie, Ma, Liangyu, Li, Song, Xu, Yuanhong

    Published in Journal of materials science & technology (30-05-2022)
    “…•Hydrazine is one of the raw materials of direct fuel cells, which play an important role in the field of energy, the electrocatalysis of hydrazine oxidation…”
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  16. 16

    Compositional Engineering of Lithium Metal Anode for High-Performance Garnet-Type Solid-State Lithium Battery by Kong, Wenhan, Wang, Suqing, Liu, Haixing, Liu, Yangxi, Jiang, Zhouyang, Mai, Xiuqiong, Wang, Haihui

    Published in Small methods (25-09-2024)
    “…Garnet-type solid-state lithium batteries (SSLBs) possess excellent potential owing to their safety and high energy density. However, fundamental barriers are…”
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  17. 17

    Spinel LiMn 2 O 4 Nanofiber: An Efficient Electrocatalyst for N 2 Reduction to NH 3 under Ambient Conditions by Li, Chengbo, Yu, Jiali, Yang, Li, Zhao, Jinxiu, Kong, Wenhan, Wang, Ting, Asiri, Abdullah M, Li, Quan, Sun, Xuping

    Published in Inorganic chemistry (05-08-2019)
    “…The production of ammonia (NH ) in the industrial scale basically relies on the traditional technology of Haber-Bosch, which is operated under harsh conditions…”
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    Journal Article
  18. 18

    Hollow Bi2MoO6 Sphere Effectively Catalyzes the Ambient Electroreduction of N2 to NH3 by Xing, Zhe, Kong, Wenhan, Wu, Tongwei, Xie, Hongtao, Wang, Ting, Luo, Yonglan, Shi, Xifeng, Asiri, Abdullah M, Zhang, Yanning, Sun, Xuping

    Published in ACS sustainable chemistry & engineering (05-08-2019)
    “…The industrial production of NH3 mainly uses the Haber–Bosch process, which consumes plenty of energy and releases large quantities of greenhouse gas…”
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  19. 19

    Structured Polyaniline: An Efficient and Durable Electrocatalyst for the Nitrogen Reduction Reaction in Acidic Media by Yu, Jiali, Li, Jian, Zhu, Xiaojuan, Zhang, Xiaoxue, Jia, Kun, Kong, Wenhan, Wei, Peipei, Chen, Hongyu, Shi, Xifeng, Asiri, Abdullah M., Li, Quan, Sun, Xuping

    Published in ChemElectroChem (15-04-2019)
    “…NH3 production vastly relies on the Haber‐Bosch process, causing high energy consumption and carbon dioxide emission. Electrochemical N2 fixation is considered…”
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