화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2018년 가을 (10/24 ~ 10/26, 대구 EXCO)
권호 24권 2호, p.2205
발표분야 차세대 탄소자원화 기술 현황과 전망 심포지엄(촉매부문위원회)
제목 Improving the Photocatalytic CO2 Reduction through Heterogenization of Molecular Reduction Catalyst
초록 Combusting fossil fuels resulted in the fast rise of CO2 concentration (the most abundant greenhouse gas) in the atmosphere, consequently causing the global warming.[1] Thus, the photocatalytic reduction of CO2 to useful C1 feedstock (i.e., CO, HCOOH, CH3OH, and CH4) is one of the important contemporary objectives in modern energy issues. We have developed efficient organic and inorganic hybrid photocatalytic system involving two/three major components that will eventually converge to a unified hybrid system to become a “dye-sensitized semiconductor hybrid” photocatalyst. Initial solar light sensitization occurs at the photosensitzer (PS) followed by electron transfer to the n-type semiconductor (n-SC), most commonly at TiO2 and finally to the site of organometallic molecular reduction catalyst (RC), facilitating the generation of electrons that can be funnelled to RC, where they will react with CO2. Several strategies were employed with the introduction of diverse types of sensitizers showing light-harvesting ability in long-wavelength region and alternate reduction catalysts ([bipyridyl]-Re(I) or Mn(I) complex).
저자 손호진
소속 고려대
키워드 광화학적 이산화탄소 환원; 비균일촉매; 분자촉매 담지화
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