Showing 141 - 160 results of 10,746 for search '((((cher OR che) OR sheers) OR ((((chern OR cheern) OR chemn) OR (her OR here)) OR chen)) OR been)', query time: 0.24s Refine Results
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    Proactively modulating mechanical behaviors of materials at multiscale for mechano-adaptable devices by Chen, Geng, Cui, Yajing, Chen, Xiaodong

    Published 2020
    “…Therefore, mechano-adaptable materials and devices that can respond as pre-designed have been explored. There are two main ways to proactively modulate mechanical behaviors for materials, which involve molecular design and structural design. …”
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    Journal Article
  8. 148

    In vitro cytotoxicity evaluation of green synthesized alumina nanoscales on different mammalian cell lines by Bukar, Alhaji Modu, Abdullah Jesse, Faez Firdaus, Che Abdullah, Che Azurahanim, M. Noordin, Mustapha, Z. Kyari, Modu, Norman, Ashreen, Mohd-Lila, Mohd Azmi

    Published 2024
    “…To overcome these challenges, in this study, we use a simple, inexpensive, and less toxic one-pot green chemistry approach instead of a chemical method to synthesize alumina nanoparticles (AlNPs) from Carica papaya extract. Nano-alumina has been widely studied due to its remarkable biological and physiochemical properties at nanoscale. …”
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    Article
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    Investigation of the reliability of nano-nickel/niobium oxide-based multilayer thin films deposited on polymer substrates for flexible electronic applications by Sahay, Rahul, Tu, Yen-Cheng, Aziz, Izzat, Budiman, Arief S., Tan, Cher Ming, Lee, Pooi See, Thomas, Olivier, Raghavan, Nagarajan

    Published 2024
    “…However, the reliability of such devices, both mechanical and electrical, is a bottleneck for their widespread application across different use-case scenarios. Here, we report the reliability of nickel-niobium oxide (crystalline-amorphous) sandwich nanolayers on a PI substrate (Ni-Nb2O5-PI) compared to pure nickel (Ni) nanolayers on a PI substrate (Ni-PI) as a potential candidate for electrodes or interconnects for flexible electronic or energy devices. …”
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    Journal Article
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