윤용주 교수
Yong Ju Yun
포항공과대학교 화학공학과 · 화학공학
연구실 소개
윤용주 교수 연구실은 표면화학 및 촉매 과학 분야에서 활동하며, 자연적으로 오목한 금속 표면에서의 엔안티오세레크티브 흡착과 분리 메커니즘을 규명하는 데 주력하고 있습니다. 특히 아미노산의 레보-·데트로 이성체가 금속 표면에 어떻게 선택적으로 흡착되는지, 그리고 이들이 동일한 표면에서 어떻게 상호작용하여 공진합체 또는 레이시믹 클러스터를 형성하는지를 다각도로 연구하고 있습니다. 또한, 암모니아 분해를 통한 수소 에너지 활용을 위한 고성능 루테늄 기반 촉매 개발과, 폴리머 캡핑을 이용한 백금 나노촉매의 구조-성능 관계 분석을 통해 이성질체 선택성 촉매 반응의 기초를 다지고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Unequivocal evidence of enantioselective, equilibrium separation of a racemic mixture on a naturally chiral metal surface is presented for the first time. The enantioselectivity is much higher than that of chiral molecules on mineral surfaces. Furthermore, the quantitative nature of the 13C labeling method provides the first direct measure of an enantiospecific adsorption energy difference on a chiral metal surface. As a service to our authors and readers, this journal provides supporting inform
Gas-phase equilibrium adsorption of D- and L-serine (Ser) mixtures and D- and L-phenylalanine (Phe) mixtures has been studied on the naturally chiral Cu{3,1,17}(R&S) surfaces. (13)C labeling of the l enantiomers (*L-Ser and *L-Phe) has enabled mass spectrometric enantiodiscrimination of the species desorbing from the surface following equilibrium adsorption. On the Cu{3,1,17}(R&S) surfaces, both equilibrium adsorption and the thermal decomposition kinetics of the D and *L enantiomers exhibit dia
The development of highly efficient Ru-based catalysts for NH3 decomposition is necessary to enable the utilization of NH3 as a COx-free H2 carrier. Modulation of the interactions between the basic support materials and Ru particles significantly enhances the performance of Ru-based catalysts for NH3 decomposition. In this study, the strong metal–support interaction (SMSI) interface between the BaCeO3 perovskite support and Ru particles was controlled by yttrium (Y) doping in the range of 0–20 m
Equilibrium adsorption of gas phase mixtures of d - and l -alanine (Ala) onto the naturally chiral Cu{3,1,17} R&S surfaces has been studied by both experiment and DFT-based modeling. Isotopically labeled * l -Ala (HO 2 13 CCH(NH 2 )CH 3 ) and unlabeled d -Ala allow mass spectrometric enantiodifferentiation of the adsorbed species during temperature-programmed decomposition, following equilibrium adsorption. Measurements of the relative equilibrium coverages of d - and * l -Ala on the Cu{3,1,17}
The enantiospecific adsorption of enantiomer mixtures on surfaces is dictated by two competing forces: the enantiospecificity of adsorption energetics and the propensity of enantiomers to aggregate into homochiral (conglomerate) or heterochiral (racemate) clusters. These phenomena have been studied by measuring the surface enantiomeric excess, ee s, of chiral amino acid mixtures adsorbed on Cu single-crystal surfaces and in equilibrium with gas-phase mixtures of varying enantiomeric excess, ee g
Heterogeneous enantioselective catalysis is considered a promising strategy for the large-scale production of enantiopure chemicals. In this work, polymer-capped Pt nanocatalysts having a uniform size were synthesized using poly(vinyl pyrrolidone) (PVP) and poly(vinyl alcohol) and supported on γ-Al2O3. After a facile heat treatment process, their catalytic performance for enantioselective hydrogenation of α-keto esters, a structure-sensitive reaction, was investigated. The presence of residual c
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