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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/23529


    Title: Improvement of the Centrifugal Force in Gravity Driven Method for the Fabrication of Highly Ordered and Submillimeter-Thick Colloidal Crystal
    Authors: Chen, TH;Huang, SY;Huang, SY;Lin, JD;Huang, BY;Kuo, CT
    Keywords: Stö ber process;silica particles;self-assembly;Bragg reflection;colloidal crystal
    Date: 2021
    Issue Date: 2022-08-05T09:38:44Z (UTC)
    Publisher: MDPI
    Abstract: In this paper, we propose a modified gravity method by introducing centrifugal force to promote the stacking of silica particles and the order of formed colloidal crystals. In this method, a monodispersed silica colloidal solution is filled into empty cells and placed onto rotation arms that are designed to apply an external centrifugal force to the filled silica solution. When sample fabrication is in progress, silica particles are forced toward the edges of the cells. The number of defects in the colloidal crystal decreases and the structural order increases during this process. The highest reflectivity and structural order of a sample was obtained when the external centrifugal force was 18 G. Compared to the samples prepared using the conventional stacking method, samples fabricated with centrifugal force possess higher reflectivity and structural order. The reflectivity increases from 68% to 90%, with an increase in centrifugal force from 0 to 18 G.
    URI: http://dx.doi.org/10.3390/polym13050692
    https://www.webofscience.com/wos/woscc/full-record/WOS:000628423400001
    https://ir.csmu.edu.tw:8080/handle/310902500/23529
    Relation: POLYMERS ,2021,v13,issue 5
    Appears in Collections:[中山醫學大學研究成果] 期刊論文

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