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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/101846


    Title: A microstructural and neutron-diffraction study on the interactions between microwave-irradiated multiwalled carbon nanotubes and hydrogen
    Authors: 陳立業;Lee, Y. T.;Tsai, P. J.;Peterson, V. K.;Yang, B.;Lin, K. S.;Zhu, M.;Lim, K. L.;Tseng, Y. S.;Chan, S. L. I.
    Contributors: 工學院化學工程與材料工程學系
    Keywords: ambient temperature;carbon nanotubes;Characterization and Evaluation of Materials;Chemistry and Materials Science;Classical Mechanics;Crystallography and Scattering Methods;Graphene;Hydrogen;Hydrogen storage;Irradiation;Materials Science;microwave radiation;Microwaves;Multi wall carbon nanotubes;Nanotubes;Neutron diffraction;Original Paper;Polymer Sciences;Radiation damage;Solid Mechanics;Storage capacity;Tubes
    Date: 2016-02-01
    Issue Date: 2026-04-21 14:47:52 (UTC+8)
    Publisher: Springer Netherlands;New York: Springer US
    Abstract: 摘要: Microwave irradiation is a simple yet effective way of altering the properties of multiwalled carbon nanotubes (MWNTs). This work studies the interactions between microwave-irradiated MWNTs and hydrogen. Effects of MWNT diameter and irradiation duration on the hydrogen-storage capacity have been investigated. We find that microwave irradiation induces damage to the MWNTs that can enhance hydrogen-storage capacity, with excessive damage being detrimental. Smaller-diameter tubes suffer less damage than larger tubes do. MWNTs with a diameter of 20–40 nm irradiated for 10 min had the highest hydrogen uptake of the samples measured, of 0.87 wt% at room temperature and under a hydrogen pressure of 3 MPa. Neutron powder-diffraction data revealed structural changes that were consistent with the insertion of hydrogen in the interstitial cavities of the microwave-irradiated MWNTs, as well as an expansion between the graphene layers of samples that were microwave irradiated. Hence, this simple treatment could be a promising solution to improve the hydrogen-storage capacities of MWNTs.
    其他題名: J Mater Sci
    出版者: New York: Springer US
    出版日期: 2016-02-01
    出處: Journal of materials science, 2016-02, Vol.51 (3), p.1308-1315
    資源來源: EBSCOhost OmniFile Full Text Select
    版權: Springer Science+Business Media New York 2015
    版權: COPYRIGHT 2016 Springer
    版權: Journal of Materials Science is a copyright of Springer, (2015). All Rights Reserved.
    識別號: ISSN: 0022-2461
    識別號: EISSN: 1573-4803
    識別號: DOI: 10.1007/s10853-015-9448-4
    Appears in Collections:[Department of Chemical and Materials Engineering] journal & Dissertation

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