Showing 281 - 300 results of 1,966 for search '((ssainae OR fine) OR (((spinn OR (ins OR ions)) OR ching) OR pin))', query time: 0.17s Refine Results
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    Rational design and mechanical understanding of three-dimensional macro-/mesoporous silicon lithium-ion battery anodes with a tunable pore size and wall thickness by Zuo, X, Wen, Y, Qiu, Y, Cheng, Y-J, Yin, S, Ji, Q, You, Z, Zhu, J, Muller-Buschbaum, P, Ma, L, Bruce, PG, Xia, Y

    Published 2020
    “…Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to its exceptional theoretical capacity, appropriate voltage profile, and vast abundance. …”
    Journal article
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    Highly nanocrystalline Mg doped ZnFe2O4 powders for rapid and simultaneous adsorption of lead, copper, and cadmium heavy metals ions in synthetic/sea waters by Al-Najar, B, Modwi, A, Shaikh, MN, Bououdina, M, Albuflasa, H, Hankins, NP

    Published 2024
    “…Nonetheless, the selectivity of Pb+2 ions drops dramatically to 25 mg/g within real seawater samples due to the strong ionic strength of high-salinity seawater. …”
    Journal article
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    In situ metal organic framework (ZIF-8) and Mechanofusion-Assisted MWCNT coating of LiFePO4/C composite material for lithium-ion batteries by Mathur, Priyatrisha, Shih, Jengywan, James Li, Ying Jeng, Hung, Tai-Feng, Thirumalraj, Balamurugan, Kannan Ramaraj, Sayee, Jose, Rajan, Karuppiah, Chelladurai, Yang, Chunchen

    Published 2023
    “…LiFePO4 is one of the industrial, scalable cathode materials in lithium-ion battery production, due to its cost-effectiveness and environmental friendliness. …”
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    Article
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    A ternary Fe₁₋ₓS@Porous carbon nanowires/reduced graphene oxide hybrid film electrode with superior volumetric and gravimetric capacities for flexible sodium ion batteries by Liu, Yang, Fang, Yongjin, Zhao, Zhiwei, Yuan, Changzhou, Lou, David Xiong Wen

    Published 2021
    “…Smart construction of ultraflexible electrodes with superior gravimetric and volumetric capacities is still challenging yet significant for sodium ion batteries (SIBs) toward wearable electronic devices. …”
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    Journal Article
  17. 297

    Experimental development of fabry-perot fiber-optic metal ion sensor based on layer-by-layer (chitosan/polystyrene sulfonate) substrate and ionophore (carboxymethyl 18-crown-6). by Yu, Feng Jen.

    Published 2013
    “…In order to assess the feasibility of the sensor application upon metal ions, ionic potassium solution chosen to be the target to simulate heavy metal ions in water, while the chelation compound carboxymethyl 18-crown-6 (CMC) was selected as the sensing element. …”
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    Final Year Project (FYP)
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