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고온, 고압에서의 요오드 치환 Polycarbosilane의 합성 및 특성
변지철,라케쉬 산다난드 샤르비드레,김윤호,박승민,고명석,민효진,이나영,류재경,김택남,Byen, Ji Cheol,Sharbidre, Rakesh Sadanand,Kim, Yoon Ho,Park, Seung Min,Ko, Myeong Seok,Min, Hyo Jin,Lee, Na young,Ryu, Jae-Kyung,Kim, Taik-Nam 한국재료학회 2020 한국재료학회지 Vol.30 No.9
SiC is a material with excellent strength, heat resistance, and corrosion resistance. It is generally used as a material for SiC invertors, semiconductor susceptors, edge rings, MOCVD susceptors, and mechanical bearings. Recently, SiC single crystals for LED are expected to be a new market application. In addition, SiC is also used as a heating element applied directly to electrical energy. Research in this study has focused on the manufacture of heating elements that can raise the temperature in a short time by irradiating SiC-I<sub>2</sub> with microwaves with polarization difference, instead of applying electric energy directly to increase the convenience and efficiency. In this experiment, Polydimethylsilane (PDMS) with 1,2 wt% of iodine is synthesized under high temperature and pressure using an autoclave. The synthesized Polycarbosilane (PCS) is heat treated in an argon gas atmosphere after curing process. The experimental results obtain resonance peaks using FT-IR and UV-Visible, and the crystal structure is measured by XRD. Also, the heat-generating characteristics are determined in the frequency band of 2.45 GHz after heat treatment in an air atmosphere furnace.