We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(111) bimetallic surface using in situ near ambient pressure X-ray photoelectron spectroscopy. Under the near ambient pressure (0.6 mbar) reaction conditions, a different dehydrogenation pathway with a reduced activation energy barrier for recombinative nitrogen desorption on the Pt-Ni-Pt(111) bimetallic surface is observed. The unique surface catalytic activity is correlated with the downward shift of the Pt 5d band states induced by the Ni subsurface atoms via charge redistribution of the topmost Pt layer. Our results provide a practical understanding of the unique chemistry of bimetallic catalysts for facile ammonia decomposition under real...
The surface states of supported PtNi nanoparticles treated at alternating O(2) and H(2) atmosphere w...
D. functional theory (DFT) calcns. are performed to compare the dissocn. of NHx (x = 1-3) species on...
Synergetic effect of surface and subsurface Ni species at Pt-Ni bimetallic catalysts for CO oxidatio...
We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(...
We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(...
Heteroepitaxial bimetallic catalytic materials have been attracting considerable interest because of...
The NH3 + O2 reaction on a Pt(533) surface has been studied in the 10−4 mbar range and close to 1 mb...
The electrocatalytic oxidation of ammonia on Pt(111) and Pt(100) has been studied using voltammetry,...
The oxidation of ammonia is a key reaction for the production of artificial fertilizers and for envi...
The oxidation of ammonia is a key reaction for the production of artificial fertilizers and for envi...
We report UPS/XPS results for ammonia adsorption and decomposition on a Ni(110)‐surface. At T<130 K ...
206 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Temperature programmed desorp...
© 2019 Elsevier B.V.The formation of interfacial metal–oxide structures on the Pt3Ni(111)bimetallic ...
We report UPS/XPS results for ammonia adsorption and decomposition on a Ni(1 10)-surface. At T \u3c ...
Catalytic ammonia oxidation over platinum has been studied experimentally from UHV up to atmospheric...
The surface states of supported PtNi nanoparticles treated at alternating O(2) and H(2) atmosphere w...
D. functional theory (DFT) calcns. are performed to compare the dissocn. of NHx (x = 1-3) species on...
Synergetic effect of surface and subsurface Ni species at Pt-Ni bimetallic catalysts for CO oxidatio...
We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(...
We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(...
Heteroepitaxial bimetallic catalytic materials have been attracting considerable interest because of...
The NH3 + O2 reaction on a Pt(533) surface has been studied in the 10−4 mbar range and close to 1 mb...
The electrocatalytic oxidation of ammonia on Pt(111) and Pt(100) has been studied using voltammetry,...
The oxidation of ammonia is a key reaction for the production of artificial fertilizers and for envi...
The oxidation of ammonia is a key reaction for the production of artificial fertilizers and for envi...
We report UPS/XPS results for ammonia adsorption and decomposition on a Ni(110)‐surface. At T<130 K ...
206 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Temperature programmed desorp...
© 2019 Elsevier B.V.The formation of interfacial metal–oxide structures on the Pt3Ni(111)bimetallic ...
We report UPS/XPS results for ammonia adsorption and decomposition on a Ni(1 10)-surface. At T \u3c ...
Catalytic ammonia oxidation over platinum has been studied experimentally from UHV up to atmospheric...
The surface states of supported PtNi nanoparticles treated at alternating O(2) and H(2) atmosphere w...
D. functional theory (DFT) calcns. are performed to compare the dissocn. of NHx (x = 1-3) species on...
Synergetic effect of surface and subsurface Ni species at Pt-Ni bimetallic catalysts for CO oxidatio...