Search Results - "Yuan, Yifei"

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  1. 1

    A Path to Smart Radio Environments: An Industrial Viewpoint on Reconfigurable Intelligent Surfaces by Liu, Ruiqi, Wu, Qingqing, Di Renzo, Marco, Yuan, Yifei

    Published in IEEE wireless communications (01-02-2022)
    “…With the standardization and commercialization completed in an unforeseen pace for the 5th generation (5G) of wireless networks, researchers, engineers and…”
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  2. 2

    Synthesis of high-entropy alloy nanoparticles on supports by the fast moving bed pyrolysis by Gao, Shaojie, Hao, Shaoyun, Huang, Zhennan, Yuan, Yifei, Han, Song, Lei, Lecheng, Zhang, Xingwang, Shahbazian-Yassar, Reza, Lu, Jun

    Published in Nature communications (24-04-2020)
    “…High-entropy alloy nanoparticles (HEA-NPs) are important class of materials with significant technological potential. However, the strategies for synthesizing…”
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  3. 3

    Understanding materials challenges for rechargeable ion batteries with in situ transmission electron microscopy by Yuan, Yifei, Amine, Khalil, Lu, Jun, Shahbazian-Yassar, Reza

    Published in Nature communications (25-08-2017)
    “…An in-depth understanding of material behaviours under complex electrochemical environment is critical for the development of advanced materials for the…”
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  4. 4

    Electrochemically activated spinel manganese oxide for rechargeable aqueous aluminum battery by Wu, Chuan, Gu, Sichen, Zhang, Qinghua, Bai, Ying, Li, Matthew, Yuan, Yifei, Wang, Huali, Liu, Xinyu, Yuan, Yanxia, Zhu, Na, Wu, Feng, Li, Hong, Gu, Lin, Lu, Jun

    Published in Nature communications (08-01-2019)
    “…Aluminum is a naturally abundant, trivalent charge carrier with high theoretical specific capacity and volumetric energy density, rendering aluminum-ion…”
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  5. 5

    Potential key technologies for 6G mobile communications by Yuan, Yifei, Zhao, Yajun, Zong, Baiqing, Parolari, Sergio

    Published in Science China. Information sciences (01-08-2020)
    “…The standard development of 5G wireless communication culminated between 2017 and 2019, followed by the worldwide deployment of 5G networks, which is expected…”
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  6. 6

    Demanding energy from carbon by Yuan, Yifei, Lu, Jun

    Published in Carbon energy (01-09-2019)
    “…Carbon is the central element driving the evolution of our human society towards prosperity over several historical stages. As for now, we are in a stage of…”
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  7. 7

    Electrochemical reduction of nitrate to ammonia via direct eight-electron transfer using a copper–molecular solid catalyst by Chen, Gao-Feng, Yuan, Yifei, Jiang, Haifeng, Ren, Shi-Yu, Ding, Liang-Xin, Ma, Lu, Wu, Tianpin, Lu, Jun, Wang, Haihui

    Published in Nature energy (01-08-2020)
    “…Ammonia (NH 3 ) is essential for modern agriculture and industry and is a potential energy carrier. NH 3 is traditionally synthesized by the Haber–Bosch…”
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  8. 8

    Rejuvenating dead lithium supply in lithium metal anodes by iodine redox by Jin, Chengbin, Liu, Tiefeng, Sheng, Ouwei, Li, Matthew, Liu, Tongchao, Yuan, Yifei, Nai, Jianwei, Ju, Zhijin, Zhang, Wenkui, Liu, Yujing, Wang, Yao, Lin, Zhan, Lu, Jun, Tao, Xinyong

    Published in Nature energy (01-04-2021)
    “…Inactive lithium (more frequently called dead lithium) in the forms of solid–electrolyte interphase and electrically isolated metallic lithium is principally…”
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  9. 9

    Holey two-dimensional transition metal oxide nanosheets for efficient energy storage by Peng, Lele, Xiong, Pan, Ma, Lu, Yuan, Yifei, Zhu, Yue, Chen, Dahong, Luo, Xiangyi, Lu, Jun, Amine, Khalil, Yu, Guihua

    Published in Nature communications (26-04-2017)
    “…Transition metal oxide nanomaterials are promising electrodes for alkali-ion batteries owing to their distinct reaction mechanism, abundant active sites and…”
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  10. 10

    Switchable encapsulation of polysulfides in the transition between sulfur and lithium sulfide by Fu, Yongsheng, Wu, Zhen, Yuan, Yifei, Chen, Peng, Yu, Lei, Yuan, Lei, Han, Qiurui, Lan, Yingjie, Bai, Wuxin, Kan, Erjun, Huang, Chengxi, Ouyang, Xiaoping, Wang, Xin, Zhu, Junwu, Lu, Jun

    Published in Nature communications (12-02-2020)
    “…Encapsulation strategies are widely used for alleviating dissolution and diffusion of polysulfides, but they experience nonrecoverable structural failure…”
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  11. 11

    Rooting binder-free tin nanoarrays into copper substrate via tin-copper alloying for robust energy storage by Ni, Jiangfeng, Zhu, Xiaocui, Yuan, Yifei, Wang, Zhenzhu, Li, Yingbo, Ma, Lu, Dai, Alvin, Li, Matthew, Wu, Tianpin, Shahbazian-Yassar, Reza, Lu, Jun, Li, Liang

    Published in Nature communications (05-03-2020)
    “…The need for high-energy batteries has driven the development of binder-free electrode architectures. However, the weak bonding between the electrode particles…”
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  12. 12

    Surface Amorphization of Vanadium Dioxide (B) for K‐Ion Battery by Li, Youpeng, Zhang, Qiaobao, Yuan, Yifei, Liu, Haodong, Yang, Chenghao, Lin, Zhang, Lu, Jun

    Published in Advanced energy materials (01-06-2020)
    “…Given the merits of low cost, fast ionic transport in electrolyte, and high operating voltage, potassium ion batteries (PIBs) are promising alternatives to…”
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  13. 13

    Utilizing solar energy to improve the oxygen evolution reaction kinetics in zinc–air battery by Liu, Xiaorui, Yuan, Yifei, Liu, Jie, Liu, Bin, Chen, Xu, Ding, Jia, Han, Xiaopeng, Deng, Yida, Zhong, Cheng, Hu, Wenbin

    Published in Nature communications (18-10-2019)
    “…Directly harvesting solar energy for battery charging represents an ultimate solution toward low-cost, green, efficient and sustainable electrochemical energy…”
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  14. 14

    Diffusion-free Grotthuss topochemistry for high-rate and long-life proton batteries by Wu, Xianyong, Hong, Jessica J., Shin, Woochul, Ma, Lu, Liu, Tongchao, Bi, Xuanxuan, Yuan, Yifei, Qi, Yitong, Surta, T. Wesley, Huang, Wenxi, Neuefeind, Joerg, Wu, Tianpin, Greaney, P. Alex, Lu, Jun, Ji, Xiulei

    Published in Nature energy (01-02-2019)
    “…The design of Faradaic battery electrodes that exhibit high rate capability and long cycle life equivalent to those of the electrodes of electrical…”
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  15. 15

    Simultaneously Dual Modification of Ni‐Rich Layered Oxide Cathode for High‐Energy Lithium‐Ion Batteries by Yang, Huiping, Wu, Hong‐Hui, Ge, Mingyuan, Li, Lingjun, Yuan, Yifei, Yao, Qi, Chen, Jie, Xia, Lingfeng, Zheng, Jiangming, Chen, Zhaoyong, Duan, Junfei, Kisslinger, Kim, Zeng, Xiao Cheng, Lee, Wah‐Keat, Zhang, Qiaobao, Lu, Jun

    Published in Advanced functional materials (28-03-2019)
    “…A critical challenge in the commercialization of layer‐structured Ni‐rich materials is the fast capacity drop and voltage fading due to the interfacial…”
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  16. 16
  17. 17

    Chemisorption of polysulfides through redox reactions with organic molecules for lithium–sulfur batteries by Li, Ge, Wang, Xiaolei, Seo, Min Ho, Li, Matthew, Ma, Lu, Yuan, Yifei, Wu, Tianpin, Yu, Aiping, Wang, Shun, Lu, Jun, Chen, Zhongwei

    Published in Nature communications (16-02-2018)
    “…Lithium–sulfur battery possesses high energy density but suffers from severe capacity fading due to the dissolution of lithium polysulfides. Novel design and…”
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  18. 18

    Correlation between manganese dissolution and dynamic phase stability in spinel-based lithium-ion battery by Liu, Tongchao, Dai, Alvin, Lu, Jun, Yuan, Yifei, Xiao, Yinguo, Yu, Lei, Li, Matthew, Gim, Jihyeon, Ma, Lu, Liu, Jiajie, Zhan, Chun, Li, Luxi, Zheng, Jiaxin, Ren, Yang, Wu, Tianpin, Shahbazian-Yassar, Reza, Wen, Jianguo, Pan, Feng, Amine, Khalil

    Published in Nature communications (17-10-2019)
    “…Historically long accepted to be the singular root cause of capacity fading, transition metal dissolution has been reported to severely degrade the anode…”
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  19. 19

    Elevated‐Temperature 3D Printing of Hybrid Solid‐State Electrolyte for Li‐Ion Batteries by Cheng, Meng, Jiang, Yizhou, Yao, Wentao, Yuan, Yifei, Deivanayagam, Ramasubramonian, Foroozan, Tara, Huang, Zhennan, Song, Boao, Rojaee, Ramin, Shokuhfar, Tolou, Pan, Yayue, Lu, Jun, Shahbazian‐Yassar, Reza

    Published in Advanced materials (Weinheim) (26-09-2018)
    “…While 3D printing of rechargeable batteries has received immense interest in advancing the next generation of 3D energy storage devices, challenges with the 3D…”
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  20. 20

    Cation-doped ZnS catalysts for polysulfide conversion in lithium–sulfur batteries by Shen, Zihan, Jin, Xin, Tian, Jiaming, Li, Matthew, Yuan, Yifei, Zhang, Shuo, Fang, Susu, Fan, Xing, Xu, Weigao, Lu, Hong, Lu, Jun, Zhang, Huigang

    Published in Nature catalysis (16-06-2022)
    “…Catalytic conversion of polysulfides is regarded as a crucial approach to enhancing kinetics and suppressing the shuttle effect in lithium–sulfur (Li–S)…”
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