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      Control of Silver Diffusion in Low-Temperature Co-Fired Diopside Glass-Ceramic Microwave Dielectrics

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          Abstract

          Electrode material for low-temperature co-fired diopside glass-ceramic used for microwave dielectrics was investigated in the present work. Diffusion of silver from the electrode to diopside glass-ceramics degrades the performance of the microwave dielectrics. Two approaches were adopted to resolve the problem of silver diffusion. Firstly, silicon-oxide (SiO 2) powder was employed and secondly crystalline phases were chosen to modify the sintering behavior and inhibit silver ions diffusion. Nanoscale amorphous SiO 2 powder turns to the quartz phase uniformly in dielectric material during the sintering process, and prevents the silver from diffusion. The chosen crystalline phase mixing into the glass-ceramics enhances crystallinity of the material and inhibits silver diffusion as well. The result provides a method to decrease the diffusivity of silver ions by adding the appropriate amount of SiO 2 and appropriate crystalline ceramics in diopside glass-ceramic dielectric materials. Finally, we used IEEE 802.11a 5.8 GHz as target specification to manufacture LTCC antenna and the results show that a good broadband antenna was made using CaMgSi 2O 6 with 4 wt % silicon oxide.

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          The thermal decomposition of silver (I, III) oxide: A combined XRD, FT-IR and Raman spectroscopic study

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            Low loss dielectric materials for LTCC applications: a review

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              Ceramic and Glass-Ceramic Packaging in the 1990s

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                29 December 2017
                January 2018
                : 11
                : 1
                : 55
                Affiliations
                [1 ]Department of Mechanical Engineering, National Taiwan University of Science and Technology, No. 43, Keelung Road, Sec. 4, Taipei 10607, Taiwan; adimini08@ 123456gmail.com (C.-Y.C.); tp609803167@ 123456gmail.com (G.-Y.C.)
                [2 ]Department of Electrical Engineering, National Taiwan University of Science and Technology, No. 43, Keelung Road, Sec. 4, Taipei 10607, Taiwan; wjliao@ 123456mail.ntust.edu.tw
                [3 ]Department of Mechanical Engineering, Ming Chi University of Technology, Taishan Dist., New Taipei City 24301, Taiwan; kwechin@ 123456mail.mcut.edu.tw
                [4 ]Prosperity Dielectric Company Limited, Taoyuan 338, Taiwan; alberttsao@ 123456pdc.com.tw
                Author notes
                [* ]Correspondence: ccchou@ 123456mail.ntust.edu.tw ; Tel.: +886-2-2737-6493
                Author information
                https://orcid.org/0000-0003-0076-7482
                Article
                materials-11-00055
                10.3390/ma11010055
                5793553
                29286330
                66dbe01d-0c37-4c04-a345-7d54bad6866a
                © 2017 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 31 October 2017
                : 26 December 2017
                Categories
                Article

                microwave dielectrics,silver diffusion,glass-ceramics,diopside,co-fired silver electrode,low temperature co-fired ceramics

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