Showing 1,141 - 1,160 results of 7,159 for search '((pink OR (((pings OR pin) OR eng) OR pineda)) OR ((sspinka OR spins) OR (lin OR long)))', query time: 0.19s Refine Results
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    Cation-conduction dominated hydrogels for durable zinc–iodine batteries by Yang, Jin-Lin, Xiao, Tuo, Xiao, Tao, Li, Jia, Yu, Zehua, Liu, Kang, Yang, Peihua, Fan, Hong Jin

    Published 2024
    “…This all-round electrolyte design renders zinc-iodine batteries with high reversibility, low self-discharge, and long lifespan.…”
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    Journal Article
  11. 1151

    Sustaining antimicrobial stewardship in a high-antibiotic resistance setting by Ng, Tat Ming, Heng, Shi Thong, Chua, Boon Hou, Ang, Li Wei, Tan, Sock Hoon, Tay, Hui Lin, Yap, Min Yi, Quek, Jason, Teng, Christine B., Young, Barnaby Edward, Lin, Ray, Ang, Brenda, Lee, Tau Hong, Lye, David C.

    Published 2023
    “…Objective: To examine the outcomes associated with the sequential implementation of PRF and CDSS and changes to these interventions with long-term use of antibiotics for and incidence of multidrug resistant organisms (MDROs) and other unintended outcomes. …”
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    Journal Article
  12. 1152

    Operando investigation on the fast two-phase transition kinetics of LiFePO4/C composite cathodes with carbon additives for lithium-ion batteries by Shih, Jengywan, Lin, Guanyin, James Li, Ying Jeng, Hung, Tai-Feng, Jose, Rajan, Karuppiah, Chelladurai, Yang, Chun–Chen

    Published 2022
    “…Because, the 1D VGCF structure can provide rapid and long-pathways for electron transfer and regulate a better phase transition effect on LiFePO4 cathode compared to the other-dimensional carbon additives. …”
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    Article
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    Thickness effect of nickel oxide thin films on associated solution-processed write-once-read-many-times memory devices by Wang, Xiao Lin, Liu, Zhen, Wen, Chao, Liu, Yang, Wang, Hong Zhe, Chen, Tu Pei, Zhang, Hai Yan

    Published 2020
    “…With self-prepared nickel acetate based solution, NiO thin films with different thicknesses have been fabricated by spin coating followed by thermal annealing. By forming a two-terminal Ag/NiO/ITO structure on glass, write-once-read-many-times (WORM) memory devices are realized. …”
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    Journal Article
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