Showing 321 - 340 results of 10,129 for search '(((spinge OR (spike OR spie)) OR five) OR (((spins OR ion) OR (shin OR thin)) OR pin))', query time: 0.26s Refine Results
  1. 321

    Temperature-dependent ultrafast carrier and phonon dynamics of topological insulator Bi1.5Sb0.5Te1.8Se1.2 by Cheng, Liang, La-o-vorakiat, Chan, Tang, Chi Sin, Nair, Saritha K., Xia, Bin, Wang, Lan, Zhu, Jian-Xin, Chia, Elbert E. M.

    Published 2014
    “…Using ultrafast optical pump-probe technique, we studied the temperature-dependent carrier and phonon dynamics of the topological insulator Bi1.5Sb0.5Te1.8Se1.2 single-crystal from 10 K to 300 K. …”
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    Journal Article
  2. 322

    Nanotwins-containing microstructure and superior mechanical strength of a Cu‒9Al‒5Fe‒5Ni alloy additively manufactured by laser metal deposition by Li, Boyuan, Zheng, Han, Han, Changjun, Zhou, Kun

    Published 2021
    “…Laser metal deposition (LMD) additive manufacturing was utilized to fabricate a Cu‒9Al‒5Fe‒5Ni alloy with a hierarchical microstructure and superior mechanical strength. …”
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    Journal Article
  3. 323

    Comparison of diagnostic performance and inter-reader agreement between PI-RADS v2.1 and PI-RADS v2: systematic review and meta-analysis by Lee, Chau Hung, Vellayappan, Balamurugan, Tan, Cher Heng

    Published 2022
    “…To perform a systematic review and meta-analysis comparing diagnostic performance and inter reader agreement between PI-RADS v. 2.1 and PI-RADS v. 2 in the detection of clinically significant prostate cancer (csPCa).…”
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    Journal Article
  4. 324

    Finite element analysis on post-buckling of thin-walled structures using ANSYS by Theint, Yi Mon

    Published 2015
    “…This project aims to develop a standard design procedure to simulate the buckling and post-buckling behaviour of thin-walled structures, via the use of finite element analysis, and hence determine conservative estimates of the ultimate compressive load. …”
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    Final Year Project (FYP)
  5. 325

    Techno-economic assessment of thin lithium metal anodes for solid-state batteries by Burton, M, Narayanan, S, Jagger, B, Olbrich, LF, Dhir, S, Shibata, M, Lain, MJ, Astbury, R, Butcher, N, Copley, M, Kotaka, T, Aihara, Y, Pasta, M

    Published 2024
    “…Solid-state lithium metal batteries show substantial promise for overcoming theoretical limitations of Li-ion batteries to enable gravimetric and volumetric energy densities upwards of 500 Wh kg−1 and 1,000 Wh l−1, respectively. …”
    Journal article
  6. 326

    Investigation into ion channel- and nitric oxide-mediated vasodilation in resistance arteries by Wallis, LE

    Published 2024
    “…Using RNAscope and immunohistochemistry, we confirm the presence of Ca<sub>V</sub>3.1, Ca<sub>V</sub>3.2, and Ca<sub>V</sub>3.3 channels in endothelial cells (ECs) and VSMCs. …”
    Thesis
  7. 327

    Robust and fast microwave-driven quantum logic for trapped-ion qubits by Weber, MA, Gely, MF, Hanley, RK, Harty, TP, Leu, AD, Löschnauer, CM, Nadlinger, DP, Lucas, DM

    Published 2024
    “…Microwave-driven logic is a promising alternative to laser control in scaling trapped-ion based quantum processors. We implement Mølmer-Sørensen two-qubit gates on <sup>43</sup>⁢Ca<sup>+</sup> hyperfine clock qubits in a cryogenic ( ≈25 K) surface trap, driven by near-field microwaves. …”
    Journal article
  8. 328

    Optical sideband spectroscopy of a single ion in a Penning trap by Mavadia, S, Stutter, G, Goodwin, JF, Crick, DR, Thompson, RC, Segal, DM

    Published 2014
    “…We perform resolved optical sideband spectroscopy on a single 40Ca+ ion in a Penning trap. We probe the electric quadrupole allowed S1/2 ↔ D5/2 transition at 729 nm and observe equally spaced sidebands for the three motional modes. …”
    Journal article
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  12. 332

    Unified quantum theory of electrochemical kinetics by coupled ion–electron transfer by Bazant, Martin Z.

    Published 2024
    “…A general theory of coupled ion–electron transfer (CIET) is presented, which unifies Marcus kinetics of electron transfer (ET) with Butler–Volmer kinetics of ion transfer (IT). …”
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    Article
  13. 333
  14. 334

    Studying the effect of Eu3+ ion doping in perovskite solar cells by Muhammad Amir Mohamad Kamal

    Published 2021
    “…The downconversion effect of incorporating Eu3+ ions using Eu(TTA)3Phen onto the electron transport material is also investigated. …”
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    Final Year Project (FYP)
  15. 335

    Direct ink writing of silicon-based anodes for Li-ion batteries by Arutselvan Pranav Ganesh

    Published 2023
    “…Among the different EESDs, the lithium-ion battery (LIB) is the most promising option due to its high power and energy densities, long service life, and eco-friendliness. …”
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    Final Year Project (FYP)
  16. 336

    Highly rechargeable aqueous Sn-metal-based hybrid-ion batteries by Xiao, Tao, Liu, Lingli, Liu, Huan, Li, Ting, Cai, Da-Qian, Lew, Wen Siang, Zhang, Yongqi, Bao, Haoming, Yang, Jin-Lin, Fan, Hong Jin

    Published 2025
    “…Second, a biphasic H2O/ionic liquid (IL) electrolyte confines Sn2+ within the aqueous phase, suppressing the formation of Sn4+ at the cathode side and eliminating the usage of an ion exchange membrane. The biphasic electrolyte and Ag-VG host are coupled with various types of cathodes (herein, halogens, LiCoO2, and Li2MnO4) to fabricate full ASBs. …”
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    Journal Article
  17. 337

    Characterisation of ion implantation for sub-0.25 micron device manufacturing by Ong, Kok Keng.

    Published 2008
    “…Damage generated by ion implantation have a strong influence on the performance of the silicon substrate and photoresist. …”
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    Thesis
  18. 338

    Core level shift of diamond and graphite upon Ar+ ion bombardment by Geng, Han He.

    Published 2010
    “…With different doses of Ar+ ions, different XPS spectra’s are obtained. Difference spectra and peak fitting are used for the analysis of XPS spectra. …”
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    Final Year Project (FYP)
  19. 339

    AC-DC converter and charge monitoring system for lithium ion batteries by Zhu, Ziwei

    Published 2017
    “…Li-ion batteries are one of the most commonly used batteries. …”
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    Final Year Project (FYP)
  20. 340