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Strong metal–support interaction in heterogeneous catalysts
Strong metal–support interaction (SMSI) in supported metal catalysts, typically accompanied
by the formation of encapsulation layers over metal nanoparticles, has drawn intense …
by the formation of encapsulation layers over metal nanoparticles, has drawn intense …
Electronic metal–support interaction of single‐atom catalysts and applications in electrocatalysis
The electronic metal–support interaction (EMSI), which acts as a bridge between theoretical
electronic study and the design of heterogenous catalysts, has attracted much attention …
electronic study and the design of heterogenous catalysts, has attracted much attention …
Dynamic interplay between metal nanoparticles and oxide support under redox conditions
The dynamic interactions between noble metal particles and reducible metal-oxide supports
can depend on redox reactions with ambient gases. Transmission electron microscopy …
can depend on redox reactions with ambient gases. Transmission electron microscopy …
The dynamics of overlayer formation on catalyst nanoparticles and strong metal-support interaction
Heterogeneous catalysts play a pivotal role in the chemical industry. The strong metal-
support interaction (SMSI), which affects the catalytic activity, is a phenomenon researched …
support interaction (SMSI), which affects the catalytic activity, is a phenomenon researched …
Towards bridging thermo/electrocatalytic CO oxidation: from nanoparticles to single atoms
K Wei, X Wang, J Ge - Chemical Society Reviews, 2024 - pubs.rsc.org
Proton exchange membrane fuel cells (PEMFCs), as a feasible alternative to replace the
traditional fossil fuel-based energy converter, contribute significantly to the global …
traditional fossil fuel-based energy converter, contribute significantly to the global …
Tuning/exploiting strong metal-support interaction (SMSI) in heterogeneous catalysis
Interactions between metals and supports are of fundamental interest in heterogeneous
catalysis. The electronic, geometric and bifunctional effects originating from Strong Metal …
catalysis. The electronic, geometric and bifunctional effects originating from Strong Metal …
Shifting CO2 hydrogenation from producing CO to CH3OH by engineering defect structures of Cu/ZrO2 and Cu/ZnO catalysts
The catalytic performance of supported Cu catalysts in CO 2 hydrogenation is structurally
dependent; hence, regulating the metal-support interactions, often driven by the redox …
dependent; hence, regulating the metal-support interactions, often driven by the redox …
Tailoring the catalytic properties of metal nanoparticles via support interactions
The development of new catalysts for energy technology and environmental remediation
requires a thorough knowledge of how the physical and chemical properties of a catalyst …
requires a thorough knowledge of how the physical and chemical properties of a catalyst …
Enhanced CO2 Methanation Activity of Ni/Anatase Catalyst by Tuning Strong Metal–Support Interactions
J Li, Y Lin, X Pan, D Miao, D Ding, Y Cui, J Dong… - ACS …, 2019 - ACS Publications
Strong metal–support interaction (SMSI) has been widely recognized for platinum-group
metals on reducible oxide supports. Herein we report that the catalytic activity of Ni catalyst …
metals on reducible oxide supports. Herein we report that the catalytic activity of Ni catalyst …
Classical strong metal–support interactions between gold nanoparticles and titanium dioxide
Supported metal catalysts play a central role in the modern chemical industry but often
exhibit poor on-stream stability. The strong metal–support interaction (SMSI) offers a route to …
exhibit poor on-stream stability. The strong metal–support interaction (SMSI) offers a route to …