• Title/Summary/Keyword: Ternary interlayer coating

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Adhesion of Cu/Interlayer/Polyimide Flexible Copper Clad Laminate Depending on the Ni-Cr-X Interlayers

  • Kim, Si Myeong;Jo, Yoo Shin;Kim, Sung June;Kim, Sang Ho
    • Journal of the Korean institute of surface engineering
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    • v.50 no.3
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    • pp.164-169
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    • 2017
  • Ni-Cr-X ternary interlayers were investigated to improve the adhesion of Cu/Ni-Cr/Polyimide flexible copper clad laminates. The ternary compounds are sputtered Ni-Cr-X films (where X is one of Nb, V, Mo, or Ti), and the effect of third elements on the adhesion was evaluated and investigated chemically and mechanically. The feel strength was higher in the order of Ni-Cr-Nb > Ni-Cr-V > Ni-Cr > Ni-Cr-Mo > Ni-Cr-Ti. Nb, which has a comparable standard electrode potential to Cr, increased the adhesion, while Ti, with a low standard electrode potential, degraded the adhesion. The Ni-Cr-Nb interlayer was amorphous, while Ni-Cr-Ti was partially crystalline. The similar morphology structure of the Ni-Cr-Nb interlayer with polyimide resulted in a better adhesion.

Microwave-assisted TS-1 Membrane for the Separation of Ethylbenzene from Xylene Mixture (마이크로웨이브로 제조된 TS-1 Membrane을 이용한 혼합 자일렌에서의 에틸벤젠 고순도화)

  • Jeon, Yu-Kwon;Lee, Gi-Cheon;Chu, Young-Hwan;Choi, Seong-Hwan;Seo, Young-Jong;Shul, Yong-Gun
    • Membrane Journal
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    • v.22 no.2
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    • pp.120-127
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    • 2012
  • In this study, separation of ethylbenzene from mixed xylene was performed by using TS-1 zeolite membrane. TS-1 zeolite membranes were prepared by microwave synthesis and changing the reaction temperature. MFI-type TS-1 membranes are synthesized on alumina tubes by functional coating using 3-chloropropyltrimethoxysilane (3CP-TMS). On top surface of interlayer, nano TS-1 crystals were seeded. To form interlayer, microwave-assisted growth of TS-1 zeolite was carried out and thin zeolite layers were produced. All of the prepared membranes are tested to separate ethylbenzene from mixed xylene at different operating temperatures. TS-1 membrane with zeolite seed synthesized at $170^{\circ}C$ compared to 120, $140^{\circ}C$ shows the best ethylbenzene separation at the operation temperature of $200^{\circ}C$ from ternary mixed xylene containing certain composition of ethylbenzene/p-xylene/m-xylene. (separation factor : 2.64, ethylbenzene flux : 1703.0 mol/$m^2{\cdot}s{\cdot}Pa$).