All Stories

  1. ChemInform Abstract: Development of a Novel Surface Elemental Analysis Methodology: X-Ray-Aided Noncontact Atomic Force Microscopy (XANAM)
  2. Synthesis of alloy AuCu nanoparticles with the L10 structure in an ionic liquid using sputter deposition
  3. Development of a Novel Surface Elemental Analysis Methodology: X-ray-Aided Noncontact Atomic Force Microscopy (XANAM)
  4. Anisotropic growth of a nickel trimer formed on a highly-stepped TiO2(110) surface
  5. Preparation and structure of a single Au atom on the TiO2(110) surface: control of the Au–metal oxide surface interaction
  6. Tunable Photoelectrochemical Properties of Chalcopyrite AgInS 2 Nanoparticles Size-Controlled with a Photoetching Technique
  7. A New Collinear-Type Energy-Filtered X-ray Photoemission Electron Microscope Equipped with a Multi-Pole Aberration-Corrected Air-Core Coil Wien Filter
  8. A New Collinear-Type Energy-Filtered X-ray Photoemission Electron Microscope Equipped with a Multi-Pole Aberration-Corrected Air-Core Coil Wien Filter
  9. Compositional control of AuPt nanoparticles synthesized in ionic liquids by the sputter deposition technique
  10. Dynamical LEED analysis of Ni2P (0001)-1×1: Evidence for P-covered surface structure
  11. Modulating the immobilization process of Au nanoparticles on TiO2(110) by electrostatic interaction between the surface and ionic liquids
  12. Nanosize-Controlled Syntheses of Indium Metal Particles and Hollow Indium Oxide Particles via the Sputter Deposition Technique in Ionic Liquids
  13. STM studies on the reconstruction of the Ni2P (101̅0) surface
  14. Fabrication of Transition Metal Oxide Nanoparticles Highly Dispersed in Ionic Liquids by Sputter Deposition
  15. Adsorption structure of acetic anhydride on a TiO2(110) surface observed by scanning tunneling microscopy
  16. Atomically dispersed Cu species on a TiO2(110) surface precovered with acetic anhydride
  17. Principles Pertaining to the Metal-support Interaction on Metal Oxide Surfaces
  18. What is the Interaction between Atomically Dispersed Ni and Oxide Surfaces?
  19. Scanning Tunneling Microscopy and Photoemission Electron Microscopy Studies on Single Crystal Ni2P Surfaces
  20. Infrared-Induced Reaction on MoO3 Using a Tunable Infrared Free Electron Laser
  21. Aberration-corrected multipole Wien filter for energy-filtered x-ray photoemission electron microscopy
  22. Self-regulated Ni cluster formation on the TiO2(110) terrace studied using scanning tunneling microscopy
  23. The First Atomic-scale Observation of a Ni2P(0001) Single Crystal Surface
  24. Surface structures of Ni2P (0001)—scanning tunneling microscopy (STM) and low-energy electron diffraction (LEED) characterizations
  25. Preparation and Characterization of a Microfabricated Oxide-on-Oxide Catalyst of α-Sb2O4/VSbO4
  26. Surface Reactions on MoO3 Induced by Tunable Pulse Infrared Free Electron Laser
  27. A Possibility of XANAM (X-ray Aided Non-contact Atomic Force Microscopy)
  28. The First Observation of an Atomic Scale Noncontact AFM Image of MoO3(010)
  29. In Situ X-ray Absorption Fine Structure Studies on the Structure of Nickel Phosphide Catalyst Supported on K-USY
  30. Extended X-ray Absorption Fine Structure Studies on the Structure of the Poly(vinylpyrrolidone)-Stabilized Cu/Pd Nanoclusters Colloidally Dispersed in Solution
  31. Observation of individual adsorbed pyridine, ammonia, and water on TiO2(110) by means of scanning tunneling microscopy
  32. Hydrogen Adatoms on TiO 2 ( 110 ) − ( 1 × 1 ) Characterized by Scanning Tunneling Microscopy and Electron Stimulated Desorption
  33. Structure and dynamic behaviour of atoms and molecules at catalyst model surfaces
  34. Structure and dynamic behaviour of atoms and molecules at catalyst model surfaces
  35. The condensation reaction of pyridine on TiO2(110): STM observation in the presence of the reactant atmosphere
  36. The selective adsorption and kinetic behaviour of molecules on TiO2(110) observed by STM and NC-AFM
  37. Study of pyridine and its derivatives adsorbed on a TiO2(110)–(1×1)surface by means of STM, TDS, XPS and MD calculation in relation to surface acid[ndash ]base interaction