Search Results - "Lao, Cheng‐Yen"

Refine Results
  1. 1

    Bamboo‐Like Hollow Tubes with MoS2/N‐Doped‐C Interfaces Boost Potassium‐Ion Storage by Jia, Baorui, Yu, Qiyao, Zhao, Yongzhi, Qin, Mingli, Wang, Wei, Liu, Zhiwei, Lao, ChengYen, Liu, Ye, Wu, Haowang, Zhang, Zili, Qu, Xuanhui

    Published in Advanced functional materials (04-10-2018)
    “…Potassium‐ion batteries (KIBs) are new‐concept of low‐cost secondary batteries, but the sluggish kinetics and huge volume expansion during cycling, both rooted…”
    Get full text
    Journal Article
  2. 2

    Flexible and High‐Loading Lithium–Sulfur Batteries Enabled by Integrated Three‐In‐One Fibrous Membranes by Wang, Jianan, Yang, Guorui, Chen, Jie, Liu, Yunpeng, Wang, Yuankun, Lao, ChengYen, Xi, Kai, Yang, Duowen, Harris, Christopher J., Yan, Wei, Ding, Shujiang, Kumar, Ramachandran Vasant

    Published in Advanced energy materials (01-10-2019)
    “…Lithium–sulfur batteries are appealing as high‐energy storage systems and hold great application prospects in wearable and portable electronics. However,…”
    Get full text
    Journal Article
  3. 3

    Unprecedented Synthesis of Holey 2D Layered Double Hydroxide Nanomesh for Enhanced Oxygen Evolution by Qin, Mingli, Li, Shumei, Zhao, Yongzhi, Lao, ChengYen, Zhang, Zili, Liu, Luan, Fang, Fei, Wu, Haoyang, Jia, Baorui, Liu, Zhiwei, Wang, Wei (Alex), Liu, Ye, Qu, Xuanhui

    Published in Advanced energy materials (03-01-2019)
    “…Creating nanosized pores in 2D materials can increase the edge sites, improve the mass transfer, and contribute to different physical properties, which shows…”
    Get full text
    Journal Article
  4. 4
  5. 5

    Deeply Nesting Zinc Sulfide Dendrites in Tertiary Hierarchical Structure for Potassium Ion Batteries: Enhanced Conductivity from Interior to Exterior by Chu, Jianhua, Wang, Wei Alex, Feng, Jianrui, Lao, Cheng-Yen, Xi, Kai, Xing, Lidong, Han, Kun, Li, Qiang, Song, Lei, Li, Ping, Li, Xin, Bao, Yanping

    Published in ACS nano (25-06-2019)
    “…Transition metal sulfides are deemed as attractive anode materials for potassium-ion batteries (KIBs) due to their high theoretical capacities based on…”
    Get full text
    Journal Article
  6. 6

    Metallic Octahedral CoSe2 Threaded by N‐Doped Carbon Nanotubes: A Flexible Framework for High‐Performance Potassium‐Ion Batteries by Yu, Qiyao, Jiang, Bo, Hu, Jun, Lao, ChengYen, Gao, Yunzhi, Li, Peihao, Liu, Zhiwei, Suo, Guoquan, He, Donglin, Wang, Wei (Alex), Yin, Geping

    Published in Advanced science (01-10-2018)
    “…Due to the abundant and low‐cost K resources, the exploration of suitable materials for potassium‐ion batteries (KIBs) is advancing as a promising alternative…”
    Get full text
    Journal Article
  7. 7

    Advanced Lithium-Sulfur Batteries Enabled by a Bio-Inspired Polysulfide Adsorptive Brush by Zhao, Teng, Ye, Yusheng, Peng, Xiaoyu, Divitini, Giorgio, Kim, Hyun-Kyung, Lao, Cheng-Yen, Coxon, Paul R., Xi, Kai, Liu, Yingjun, Ducati, Caterina, Chen, Renjie, Kumar, R. Vasant

    Published in Advanced functional materials (13-12-2016)
    “…Issues with the dissolution and diffusion of polysulfides in liquid organic electrolytes hinder the advance of lithium–sulfur batteries for next‐generation…”
    Get full text
    Journal Article
  8. 8

    Phase boundary engineering of metal-organic-framework-derived carbonaceous nickel selenides for sodium-ion batteries by Lu, Shiyao, Wu, Hu, Hou, Jingwei, Liu, Limin, Li, Jiao, Harris, Chris J., Lao, Cheng-Yen, Guo, Yuzheng, Xi, Kai, Ding, Shujiang, Gao, Guoxin, Cheetham, Anthony K., Kumar, R. Vasant

    Published in Nano research (01-08-2020)
    “…Sodium-ion batteries (SIBs) are promising power sources due to the low cost and abundance of battery-grade sodium resources, while practical SIBs suffer from…”
    Get full text
    Journal Article
  9. 9
  10. 10

    Nitrogen-Doped Hierarchical Porous Carbon-Promoted Adsorption of Anthraquinone for Long-Life Organic Batteries by Zhu, Tianxiang, Liu, Dongyu, Shi, Lei, Lu, Shiyao, Gao, Yiyang, Zhang, Dongyang, Mao, Heng, Sun, Zehui, Lao, Cheng-Yen, Li, Mingtao, Xi, Kai, Ding, Shujiang

    Published in ACS applied materials & interfaces (05-08-2020)
    “…Organic quinone molecules are attractive electrochemical energy storage devices because of their high abundance, multielectron reactions, and structural…”
    Get full text
    Journal Article
  11. 11

    Photocatalytic Performance of NiO/NiTiO3 Composite Nanofiber Films by Bozhi Yang, Xuefeng Bai, Jiaxuan Wang, Minghao Fang, Xiaowen Wu, Yan’gai Liu, Zhaohui Huang, Cheng-Yen Lao, Xin Min

    Published in Catalysts (01-06-2019)
    “…Photocatalytic degradation of pollutants is one of the cleanest technologies for environmental remediation. Herein, we prepared NiO/NiTiO3 heterostructure…”
    Get full text
    Journal Article
  12. 12

    Facile mechanochemical synthesis of non-stoichiometric silica-carbon composite for enhanced lithium storage properties by Zhang, Bo, Wang, Hongwei, Liu, Chang, Li, Dejun, Kim, Hyun-Kyung, Harris, Chris, Lao, Cheng-yen, Abdelkader, Amr, Xi, Kai

    Published in Journal of alloys and compounds (15-09-2019)
    “…A large number of new electrode materials and novel structural designs are emerging for lithium-ion batteries, yet scalable synthesis and raw material costs…”
    Get full text
    Journal Article
  13. 13

    Thickness-control of ultrathin bimetallic Fe–Mo selenide@N-doped carbon core/shell “nano-crisps” for high-performance potassium-ion batteries by Chu, Jianhua, Yu, Qiyao, Yang, Dexin, Xing, Lidong, Lao, Cheng-Yen, Wang, Min, Han, Kun, Liu, Zhiwei, Zhang, Lin, Du, Wenya, Xi, Kai, Bao, Yanping, Wang, Wei (Alex)

    Published in Applied materials today (01-12-2018)
    “…•Ultrathin crisps-like bimetallic Fe–Mo selenide@N-doped carbon core/shell nanostructure was synthesized.•The few-layered bimetallic selenide with high…”
    Get full text
    Journal Article
  14. 14

    Recyclable cobalt-molybdenum bimetallic carbide modified separator boosts the polysulfide adsorption-catalysis of lithium sulfur battery by Zhang, Ze, Wang, Jia-Nan, Shao, A.-Hu, Xiong, Dong-Gen, Liu, Jian-Wei, Lao, Cheng-Yen, Xi, Kai, Lu, Shi-Yao, Jiang, Qiu, Yu, Ji, Li, Huang-Long, Yang, Zhen-Yu, Kumar, R. Vasant

    Published in Science China materials (01-12-2020)
    “…The polysulfide shuttling and sluggish redox kinetics, due to the notorious adsorption-catalysis underperformance, are the ultimate obstacles of the practical…”
    Get full text
    Journal Article
  15. 15
  16. 16

    Li-S-Batteries: Advanced Lithium-Sulfur Batteries Enabled by a Bio-Inspired Polysulfide Adsorptive Brush (Adv. Funct. Mater. 46/2016) by Zhao, Teng, Ye, Yusheng, Peng, Xiaoyu, Divitini, Giorgio, Kim, Hyun-Kyung, Lao, Cheng-Yen, Coxon, Paul R., Xi, Kai, Liu, Yingjun, Ducati, Caterina, Chen, Renjie, Kumar, R. Vasant

    Published in Advanced functional materials (01-12-2016)
    “…On page 8418, R. Chen, R. V. Kumar, and co‐workers describe a bio‐inspired chemi‐functional interlayer for lithium sulfur batteries. The adsorption of…”
    Get full text
    Journal Article
  17. 17

    Metallic Octahedral CoSe 2 Threaded by N-Doped Carbon Nanotubes: A Flexible Framework for High-Performance Potassium-Ion Batteries by Yu, Qiyao, Jiang, Bo, Hu, Jun, Lao, Cheng-Yen, Gao, Yunzhi, Li, Peihao, Liu, Zhiwei, Suo, Guoquan, He, Donglin, Wang, Wei Alex, Yin, Geping

    Published in Advanced science (01-10-2018)
    “…Due to the abundant and low-cost K resources, the exploration of suitable materials for potassium-ion batteries (KIBs) is advancing as a promising alternative…”
    Get full text
    Journal Article
  18. 18
  19. 19

    Bamboo‐Like Hollow Tubes with MoS 2 /N‐Doped‐C Interfaces Boost Potassium‐Ion Storage by Jia, Baorui, Yu, Qiyao, Zhao, Yongzhi, Qin, Mingli, Wang, Wei, Liu, Zhiwei, Lao, ChengYen, Liu, Ye, Wu, Haowang, Zhang, Zili, Qu, Xuanhui

    Published in Advanced functional materials (01-10-2018)
    “…Abstract Potassium‐ion batteries (KIBs) are new‐concept of low‐cost secondary batteries, but the sluggish kinetics and huge volume expansion during cycling,…”
    Get full text
    Journal Article
  20. 20