화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2017년 가을 (10/25 ~ 10/27, 대전컨벤션센터)
권호 23권 2호, p.2191
발표분야 촉매 및 반응공학
제목 Mechanism of CO2 to Methanol Synthesis over Defected Cu Surface and Role of Zn as Stabilizer of Oxygen Included Intermediates : a DFT Study
초록 Cu based catalysts have been used variously to synthesize valuable platform chemicals like a methanol (MeOH) and formic acid from CO2 therefore recent studies have been targeting increasing effectiveness of catalysts. Industrially, the most favorable catalyst is Cu/ZnO@Al2O3 catalyst however, the role of Zn in this reaction is clearly not known yet. In this study, to find actual effect of Zn in Cu alloy we modeled four surfaces such as terrace [Cu(111)], step [Cu(211)], defected step [Cu(211)kink] and alloy [CuZn(211)]. We found that favorable site separations are occurred with oxygen included intermediates and carbon based intermediates. Moreover, we calculated the most probable energetics pathway in CO2 to MeOH reaction  with a DFT study over Cu(111), Cu(211), Cu(211)kink and CuZn(211), respectively. The results shows the role of Zn is not only site separation of adsorbates, but also lowering its energy barrier in a rate determining step.
저자 조덕연1, 함형철2, 이관영3
소속 1고려대, 2연료전지센터, 3KIST
키워드 촉매 및 반응공학
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