Yong Wang
0000-0002-9893-8296
21 papers found
Refreshing results…
Facet‐Dependent Oxidative Strong Metal‐Support Interactions of Palladium–TiO 2 Determined by In Situ Transmission Electron Microscopy
In Situ Resolving the Atomic Reconstruction of SnO2 (110) Surface
Highly Selective Acetylene Semihydrogenation Catalyst with an Operation Window Exceeding 150 °C
Elucidation of Active Sites for CH4 Catalytic Oxidation over Pd/CeO2 Via Tailoring Metal–Support Interactions
In situ manipulation of the active Au-TiO 2 interface with atomic precision during CO oxidation
Recent Progresses on Structural Reconstruction of Nanosized Metal Catalysts via Controlled-Atmosphere Transmission Electron Microscopy: A Review
Reshaping of Metal Nanoparticles Under Reaction Conditions
Visualizing H 2 O molecules reacting at TiO 2 active sites with transmission electron microscopy
Oxide Catalysts with Ultrastrong Resistance to SO 2 Deactivation for Removing Nitric Oxide at Low Temperature
An Environmental Transmission Electron Microscopy Study of the Stability of the TiO2 (1 × 4) Reconstructed (001) Surface
Atomic Mechanism in Layer-by-Layer Growth via Surface Reconstruction
Surface faceting and compositional evolution of Pd@Au core–shell nanocrystals during in situ annealing
Fast Gas-Solid Reaction Kinetics of Nanoparticles Unveiled by Millisecond In Situ Electron Diffraction at Ambient Pressure
A Study of Vertical Transport through Graphene toward Control of Quantum Tunneling
Unexpected refacetting of palladium nanoparticles under atmospheric N2 conditions
Unveiling the Atomic Structures of the Minority Surfaces of TiO2 Nanocrystals
A Rational Solid-State Synthesis of Supported Au–Ni Bimetallic Nanoparticles with Enhanced Activity for Gas-Phase Selective Oxidation of Alcohols
In Situ STEM Determination of the Atomic Structure and Reconstruction Mechanism of the TiO2 (001) (1 × 4) Surface
Atomic scale observation of a defect-mediated first-order phase transition in VO2(A)
Atomic-scale observation of pressure-dependent reduction dynamics of W18O49 nanowires using environmental TEM
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