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    An RF energy harvester by Wang, Chao

    Published 2017
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    Final Year Project (FYP)
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    Personalised video by Seah, Kai Ler

    Published 2018
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    Final Year Project (FYP)
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    A general and facile method for preparation of large-scale reduced graphene oxide films with controlled structures by Bi, Hengchang, Wan, Shu, Cao, Xiehong, Wu, Xing, Zhou, Yilong, Yin, Kuibo, Su, Shi, Ma, Qinglang, Sindoro, Melinda, Zhu, Jingfang, Zhang, Zhuoran, Zhang, Hua, Sun, Litao

    Published 2021
    “…Graphene or reduced graphene oxide films (rGOFs) can be prepared by a number of methods including chemical vapor deposition (CVD), filtration, and spin-coating for a variety of applications. However, controlling their surface morphologies and microstructures to meet the requirements of specific applications is still a great challenge. …”
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    Journal Article
  19. 1279

    Magnetism of two-dimensional chromium tellurides by Yang, Jiefu, Zhu, Chao, Deng, Ya, Tang, Bijun, Liu, Zheng

    Published 2023
    “…2D ferromagnets have garnered considerable attention for their potential applications in spintronics, magnonics, and spin-orbitronics. Chromium tellurides (CrxTey), in particular, have drawn interest due to their exceptional magnetic properties and diverse range of chemical stoichiometries, attributed to the phenomenon of chromium self-intercalation. …”
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    Journal Article
  20. 1280

    Electric field modulation of the tetragonal domain orientation revealed in the magnetic ground state of quantum paraelectric EuTiO3 by Kato, Y., Sunku, S. S., Ito, T., Spalek, L., Shimuta, M., Katsufuji, T., Saxena, S. S., Batista, Cristian D., Petrovic, A. P., Sengupta, Pinaki, Panagopoulos, Christos

    Published 2013
    “…Our experimentally determined magnetic phase diagram is accurately reproduced by a three-dimensional (3D) anisotropic Heisenberg spin model. Furthermore, we demonstrate that electric field cooling acts to suppress this orientational disorder by realigning the domains due to the strong coupling between electric fields and lattice dipoles characteristic of paraelectric materials.…”
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    Journal Article