Search Results - "Lv, Yaokang"

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  1. 1

    Self‐Assembled Carbon Superstructures Achieving Ultra‐Stable and Fast Proton‐Coupled Charge Storage Kinetics by Song, Ziyang, Miao, Ling, Ruhlmann, Laurent, Lv, Yaokang, Zhu, Dazhang, Li, Liangchun, Gan, Lihua, Liu, Mingxian

    Published in Advanced materials (Weinheim) (01-12-2021)
    “…Designing ingenious and stable carbon nanostructures is critical but still challenging for use in energy storage devices with superior electrochemistry…”
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  2. 2

    Anionic Co‐insertion Charge Storage in Dinitrobenzene Cathodes for High‐Performance Aqueous Zinc–Organic Batteries by Song, Ziyang, Miao, Ling, Duan, Hui, Ruhlmann, Laurent, Lv, Yaokang, Zhu, Dazhang, Li, Liangchun, Gan, Lihua, Liu, Mingxian

    Published in Angewandte Chemie International Edition (26-08-2022)
    “…Highly active and stable cathodes are critical for aqueous Zn–organic batteries with high capacity, fast redox kinetics, and long life. We herein report para‐,…”
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  3. 3

    A self-template synthesis of hierarchical porous carbon foams based on banana peel for supercapacitor electrodes by Lv, Yaokang, Gan, Lihua, Liu, Mingxian, Xiong, Wei, Xu, Zijie, Zhu, Dazhang, Wright, Dominic S.

    Published in Journal of power sources (01-07-2012)
    “…[Display omitted] ► We report a self-template synthesis of hierarchical porous carbon foams (HPCFs). ► Banana peel based zinc complex was employed as the…”
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  4. 4

    Recent advances in zinc-ion hybrid energy storage: Coloring high-power capacitors with battery-level energy by Miao, Ling, Lv, Yaokang, Zhu, Dazhang, Li, Liangchun, Gan, Lihua, Liu, Mingxian

    Published in Chinese chemical letters (01-07-2023)
    “…Zinc-ion hybrid capacitors (ZICs) are considered as newly-emerging and competitive candidates for energy storage devices due to the integration of…”
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  5. 5

    High-energy aqueous supercapacitors enabled by N/O codoped carbon nanosheets and “water-in-salt” electrolyte by Yan, Jingjing, Miao, Ling, Duan, Hui, Zhu, Dazhang, Lv, Yaokang, Li, Liangchun, Gan, Lihua, Liu, Mingxian

    Published in Chinese chemical letters (01-05-2022)
    “…A facile fabrication strategy is reported to obtain N/O codoped porous carbon nanosheets for purpose of ameliorating the charge transfer and accumulation in…”
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  6. 6

    Highly active N, O-doped hierarchical porous carbons for high-energy supercapacitors by Zhou, Ziyang, Miao, Ling, Duan, Hui, Wang, Zhiwei, Lv, Yaokang, Xiong, Wei, Zhu, Dazhang, Li, Liangchun, Liu, Mingxian, Gan, Lihua

    Published in Chinese chemical letters (01-05-2020)
    “…Highly active N, O-doped hierarchical porous carbons are developed to optimize the physical adsorption and faradaic activity for efficient energy storage…”
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  7. 7

    Non‐Metal Ion Storage in Zinc‐Organic Batteries by Song, Ziyang, Miao, Ling, Lv, Yaokang, Gan, Lihua, Liu, Mingxian

    Published in Advanced science (01-05-2024)
    “…Zinc‐organic batteries (ZOBs) are receiving widespread attention as up‐and‐coming energy‐storage systems due to their sustainability, operational safety and…”
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  8. 8

    Water-in-salt electrolyte ion-matched N/O codoped porous carbons for high-performance supercapacitors by Yan, Jingjing, Zhu, Dazhang, Lv, Yaokang, Xiong, Wei, Liu, Mingxian, Gan, Lihua

    Published in Chinese chemical letters (01-02-2020)
    “…N O−1 codoped porous carbons synthesized via a Schiff-base reaction show dominant micropores matched with the ionic sizes of 2.2 V LiTFSI water-in-salt…”
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  9. 9

    Porous carbon globules with moss-like surfaces from semi-biomass interpenetrating polymer network for efficient charge storage by Ping, Guchuan, Miao, Ling, Awati, Abuduheiremu, Qian, Xiaoyu, Shi, Ting, Lv, Yaokang, Liu, Yafei, Gan, Lihua, Liu, Mingxian, Zhu, Dazhang

    Published in Chinese chemical letters (01-12-2021)
    “…The bio-nanotechnological fabrication of high-surface-area carbons has attracted widespread interest in supercapacitor applications by using readily-available…”
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  10. 10

    From interpenetrating polymer networks to hierarchical porous carbons for advanced supercapacitor electrodes by Miao, Ling, Qian, Xiaoyu, Zhu, Dazhang, Chen, Ting, Ping, Guchuan, Lv, Yaokang, Xiong, Wei, Liu, Yafei, Gan, Lihua, Liu, Mingxian

    Published in Chinese chemical letters (01-07-2019)
    “…A novel and effective strategy to fabricate hierarchical porous carbons for supercapacitors is developed via in-situ activation of interpenetrating polymer…”
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  11. 11

    A novel synthesis of mesoporous carbon microspheres for supercapacitor electrodes by Xiong, Wei, Liu, Mingxian, Gan, Lihua, Lv, Yaokang, Li, Yang, Yang, Liang, Xu, Zijie, Hao, Zhixian, Liu, Honglai, Chen, Longwu

    Published in Journal of power sources (01-12-2011)
    “…Mesoporous carbon microspheres (MCMs) with the diameters of 0.5–2.0 μm and mean mesopore sizes of 2.6–4.0 nm were synthesized by a novel hydrothermal…”
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  12. 12

    Preparation of nitrogen-doped macro-/mesoporous carbon foams as electrode material for supercapacitors by Xiong, Wei, Liu, Mingxian, Gan, Lihua, Lv, Yaokang, Xu, Zijie, Hao, Zhixian, Chen, Longwu

    “…Nitrogen-doped macro-/mesoporous carbon foams (N-MMCFs) with main macropore of 0.2μm, mesopore of 2.6–4.0nm and specific surface areas of 1205–1808m2g−1 were…”
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  13. 13

    A quinone-amine coupling route to interwoven heterodiatomic carbon nanofiber networks with fast and durable charge storage by Mansuer, Mulati, Song, Ziyang, Miao, Ling, Awati, Abuduheiremu, Lv, Yaokang, Gan, Lihua, Liu, Mingxian

    Published in Next materials (01-01-2024)
    “…Engineering highly active and robust carbon nanoarchitectures is critical for energy storage devices with fast and durable charge storage capability. Herein, a…”
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  14. 14

    Carbonaceous electrode materials for supercapacitor: Preparation and surface functionalization by Lv, Yaokang, Wang, Juncheng, Ji, Dingwei, Li, Jianhang, Zhao, Suaisuai, Zhao, Yingjian, Cai, Zhiwei, He, Xuehua, Sun, Xiaofang

    Published in Frontiers in energy research (26-01-2023)
    “…Supercapacitors became more and more important recently in the area of energy storage and conversion. Their large power deliveries abilities, high stability…”
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  15. 15

    Surface modification by graphene oxide: An efficient strategy to improve the performance of activated carbon based supercapacitors by Du, Weishi, Lv, Yaokang, Lu, Hongliang, Chen, Zaihua, Wright, Dominic S., Zhang, Cheng

    Published in Chinese chemical letters (01-12-2017)
    “…We demonstrate an efficient and cost-effective strategy to improve electrochemical properties of AC based electrode materials. A series of graphene oxide…”
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  17. 17

    Preparation, characterization and properties of liposome-loaded polycaprolactone microspheres as a drug delivery system by Liu, Mingxian, Chen, Liuhua, Zhao, Yunhui, Gan, Lihua, Zhu, Dazhang, Xiong, Wei, Lv, Yaokang, Xu, Zijie, Hao, Zhixian, Chen, Longwu

    “…By using a w/o/w double emulsion solvent extraction/evaporation method, liposome-loaded polycaprolactone microspheres were prepared as a drug delivery system…”
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  18. 18

    Synthesis of Sodium-vanadate-doped Ordered Mesoporous Carbon Foams as Capacitor Electrode Materials by Lv, Yaokang, Liu, Mingxian, Gan, Lihua, Cao, YongJie, Chen, Liuhua, Xiong, Wei, Xu, Zijie, Hao, Zhixian, Liu, Honglai, Chen, Longwu

    Published in Chemistry letters (05-03-2011)
    “…Sodium-vanadate-doped ordered mesoporous carbon foams (V-MCFs) were prepared through an evaporation-induced self-assembly strategy. The resultant V-MCFs…”
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  19. 19

    Crystal structure of dibromidotetrakis(propan-2-ol-κ O )nickel(II) by Lv, Yaokang, Liu, Mingxian, Ji, Lvlv, Zhang, Cheng, Ouyang, Mi

    “…The asymmetric unit of the mononuclear title complex, [NiBr 2 (C 3 H 8 O) 4 ], comprises a Ni II cation located on a centre of inversion, one Br − anion and…”
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  20. 20

    NH4+ Charge Carrier Coordinated H‐Bonded Organic Small Molecule for Fast and Superstable Rechargeable Zinc Batteries by Song, Ziyang, Miao, Ling, Lv, Yaokang, Gan, Lihua, Liu, Mingxian

    Published in Angewandte Chemie International Edition (18-09-2023)
    “…Organic small molecules as high‐capacity cathodes for Zn‐organic batteries have inspired numerous interests, but are trapped by their easy‐dissolution in…”
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