화학공학소재연구정보센터
검색결과 : 7건
No. Article
1 Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications
Belviso F, Claerbout VEP, Comas-Vives A, Dalal NS, Fan FR, Filippetti A, Fiorentini V, Foppa L, Franchini C, Geisler B, Ghiringhelli LM, Gross A, Hu SB, Iniguez J, Kauwe SK, Musfeldt JL, Nicolini P, Pentcheva R, Polcar T, Ren W, Ricci F, Ricci F, Sen HS, Skelton JM, Sparks TD, Stroppa A, Urru A, Vandichel M, Vavassori P, Wu H, Yang K, Zhao HJ, Puggioni D, Cortese R, Cammarata A
Inorganic Chemistry, 58(22), 14939, 2019
2 CO methanation on ruthenium flat and stepped surfaces: Key role of H-transfers and entropy revealed by ab initio molecular dynamics
Foppa L, Iannuzzi M, Coperet C, Comas-Vives A
Journal of Catalysis, 371, 270, 2019
3 Cooperativity and Dynamics Increase the Performance of NiFe Dry Reforming Catalysts
Kim SM, Abdala PM, Margossian T, Hosseini D, Foppa L, Armutlulu A, van Beek W, Comas-Vives A, Coperet C, Muller C
Journal of the American Chemical Society, 139(5), 1937, 2017
4 Contrasting the Role of Ni/Al2O3 Interfaces in Water-Gas Shift and Dry Reforming of Methane
Foppa L, Margossian T, Kim SM, Muller C, Coperet C, Larmier K, Comas-Vives A
Journal of the American Chemical Society, 139(47), 17128, 2017
5 Intrinsic reactivity of Ni, Pd and Pt surfaces in dry reforming and competitive reactions: Insights from first principles calculations and microkinetic modeling simulations
Foppa L, Silaghi MC, Larmier K, Comas-Vives A
Journal of Catalysis, 343, 196, 2016
6 Increased Back-Bonding Explains Step-Edge Reactivity and Particle Size Effect for CO Activation on Ru Nanoparticles
Foppa L, Coperet C, Comas-Vives A
Journal of the American Chemical Society, 138(51), 16655, 2016
7 Metal Nanoparticle/Ionic Liquid/Cellulose: New Catalytically Active Membrane Materials for Hydrogenation Reactions
Gelesky MA, Scheeren CW, Foppa L, Pavan FA, Dias SLP, Dupont J
Biomacromolecules, 10(7), 1888, 2009